IndraLab

Statements


ZRANB1 affects EZH2
| 1 15 11
ZRANB1 binds EZH2.
| 5 10
| 5 9

sparser
"ZRANB1 binds, deubiquitinates, and stabilizes EZH2."

sparser
"Based on the result of a previous study, we found that binding of zinc finger RANBP2-type containing 1 (ZRANB1) to EZH2 led to EZH2 deubiquitination, thereby stabilizing EZH2 protein expression in breast cancer [ xref ]."

reach
"ZRANB1 binds, deubiquitinates, and stabilizes EZH2."

sparser
"Deletion analysis using various truncation mutants (M1, NZFs; M2, NZFs + AnkUBD; M3, AnkUBD + OTU; xref ) demonstrated that the OTU domain not only mediated the physical interaction of ZRANB1 with EZH2 ( xref ) but also was required for the stabilization of EZH2 by ZRANB1 ( xref )."

sparser
"Moreover, CoIP assay indicated that FAM83C-AS1 depletion inhibited the association of ZRANB1 with EZH2 ( xref )."

sparser
"Previous studies have revealed that ZRANB1 binding to EZH2 resulted in EZH2 deubiquitination and thereby stabilized EZH2 protein in breast cancer [ xref ]."

sparser
"ZRANB1 binds, deubiquitinates, and stabilizes EZH2."

reach
"ZRANB1 binds, deubiquitinates, and stabilizes EZH2."

reach
"They demonstrated that ZRANB1 can bind, deubiquitinate, and stabilize EZH2, which enhances breast cancer tumorigenesis and metastasis."

sparser
"Furthermore, binding-domain mapping analysis showed that both the N-terminal region (EID + D1) and the CXC domain of EZH2 could interact with ZRANB1 ( xref , xref )."
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sparser
"Furthermore, we observed the interaction of ZRANB1 with endogenous EZH2 and SUZ12 ( xref ) and, reciprocally, the interaction of either exogenous ( xref ) or endogenous ( xref ) EZH2 with endogenous ZRANB1, SUZ12, and EED, suggesting that ZRANB1 may regulate EZH2 that is present in the PRC2."
ZRANB1 activates EZH2.
| 1 3
ZRANB1 activates EZH2. 4 / 4
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"Ectopic expression of ZRANB1 in both LM2 cells (XREF_FIG) and HEK293T cells (XREF_SUPPLEMENTARY) markedly upregulated endogenous EZH2 protein and increased cell proliferation, which could be reversed by knockdown of EZH2."

eidos
"The histone methyltransferase EZH2 also appears to be a target of TRABID DUB activity , and TRABID depletion has been shown to decrease EZH2 levels ( 38 ) ."
| PMC

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"Furthermore, purified His ZRANB1 could bind to purified GST-EZH2 under cell-free conditions (XREF_FIG), suggesting that ZRANB1 may directly regulate EZH2."

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"To determine whether the six EZH2 interacting DUBs affect EZH2 ubiquitination and protein levels, we transfected them individually into HEK293T cells, and we found that USP22 and ZRANB1 decreased the polyubiquitination of EZH2 (XREF_SUPPLEMENTARY); however, only ZRANB1 upregulated endogenous EZH2 protein (XREF_SUPPLEMENTARY)."
ZRANB1 ubiquitinates EZH2.
| 2 1
ZRANB1 leads to the ubiquitination of EZH2. 3 / 3
| 2 1

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"More importantly, downregulation of FAM83C-AS1 or ZRANB1 in RKO and SW620 cells enhanced the EZH2 ubiquitination (XREF_FIG)."

reach
"To determine whether the six EZH2 interacting DUBs affect EZH2 ubiquitination and protein levels, we transfected them individually into HEK293T cells, and we found that USP22 and ZRANB1 decreased the polyubiquitination of EZH2 (XREF_SUPPLEMENTARY); however, only ZRANB1 upregulated endogenous EZH2 protein (XREF_SUPPLEMENTARY)."

sparser
"More importantly, downregulation of FAM83C-AS1 or ZRANB1 in RKO and SW620 cells enhanced the EZH2 ubiquitination ( xref )."
ZRANB1 deubiquitinates EZH2.
| 3
ZRANB1 deubiquitinates EZH2. 2 / 2
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"To further determine whether ZRANB1 directly deubiquitinates EZH2, we incubated purified ZRANB1 and ubiquitinated EZH2 purified from ZRANB1-knockout HEK293A cells in a cell-free system."

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"ZRANB1 purified from insect cells markedly decreased EZH2 polyubiquitination in vitro (XREF_FIG), suggesting that EZH2 is a substrate of ZRANB1."
Modified ZRANB1 leads to the deubiquitination of EZH2. 1 / 1
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"Indeed, overexpression of ZRANB1 in ZRANB1-knockout HEK293A cells substantially reduced EZH2 polyubiquitination (XREF_FIG, denaturing condition)."
ZRANB1 increases the amount of EZH2.
| 1
Modified ZRANB1 increases the amount of EZH2. 1 / 1
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"Conversely, silencing ZRANB1 expression in MDA-MB-231 cells by two independent small interfering RNAs (siRNAs) (2 and 5) reduced endogenous EZH2 protein levels by 70% and 60%, respectively (XREF_FIG)."
ZRANB1 decreases the amount of EZH2.
| 1
ZRANB1 decreases the amount of EZH2. 1 / 1
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"The histone methyltransferase EZH2 also appears to be a target of TRABID DUB activity, and TRABID depletion has been shown to decrease EZH2 levels."
| PMC
ZRANB1 affects UBC
18 |
18 |

No evidence text available

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ZRANB1 affects PIK3C3
| 13 4
ZRANB1 activates PIK3C3.
| 8
ZRANB1 activates PIK3C3. 8 / 8
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"Thus, our results highlight the importance of TRABID mediated VPS34 stabilization in maintaining normal liver metabolism and uncover the contribution of TRABID downregulation to the pathogenesis of liver steatosis through VPS34 destabilization and autophagy deficiency."

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"TRABID knockdown decreased VPS34 protein abundance and half-life, whereas TRABID overexpression enhanced VPS34 expression and stability."

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"To interrogate the in vivo function of TRABID mediated VPS34 stabilization in liver metabolism, we set up a mouse model of nonalcoholic fatty liver disease (NAFLD) via feeding mice with a high-fat diet (HFD)."

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"We provide evidence that this switch of UBE3C localization plays a critical role for cells to cope with the stressed conditions by favoring TRABID mediated VPS34 stabilization and autophagy induction, as prevention of this switch by an enforced association of UBE3C with VPS34 impairs autophagy and compromises proteostasis, ER quality control and cell survival."

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"Specifically in the liver, we show that TRABID mediated VPS34 stabilization is critical for lipid metabolism and is downregulated during the pathogenesis of steatosis."

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"In the liver, TRABID mediated VPS34 stabilization is important for lipid metabolism and is downregulated in a mouse model of NAFLD."

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"Our findings suggest that the balance between UBE3C and TRABID on VPS34 regulation is disturbed by various ER/proteotoxic stressors to favor TRABID mediated VPS34 stabilization, thus facilitating autophagy induction."

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"We next investigated the functional consequence of TRABID mediated VPS34 deubiquitnation."
ZRANB1 binds PIK3C3.
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sparser
"Consistent with the deubiquitination effect of TRABID on VPS34, endogenous TRABID interacted with endogenous VPS34 (Fig.  xref )."

sparser
"Furthermore, baculovirally purified recombinant TRABID and VPS34 interacted in vitro (Fig.  xref )."

sparser
"The interaction of TRABID with VPS34, however, was not altered under these conditions (Supplementary Fig.  xref )."
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sparser
"However, no association of TRABID with Rubicon, which forms a VPS34 complex with autophagy-inhibitory function xref , could be detected (Supplementary Fig.  xref )."
ZRANB1 deubiquitinates PIK3C3.
| 2
ZRANB1 leads to the deubiquitination of PIK3C3 on K29. 2 / 2
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"TRABID antagonizes VPS34 K29 and K48 heterotypic ubiquitination even though it can not hydrolyze unanchored K48 diubiquitin chains 37."

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"TRABID reduces VPS34 K29 and K48 ubiquitination to stabilize VPS34."
ZRANB1 decreases the amount of PIK3C3.
| 2
ZRANB1 decreases the amount of PIK3C3. 2 / 2
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"TRABID knockdown decreased VPS34 protein abundance and half-life, whereas TRABID overexpression enhanced VPS34 expression and stability."

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"Among the subunits of VPS34 complex, TRABID overexpression reduced the ubiquitination level of transfected and endogenous VPS34, but not AMBRA1, Beclin-1, ATG14 and UVRAG."
ZRANB1 increases the amount of PIK3C3.
| 1
ZRANB1 increases the amount of PIK3C3. 1 / 1
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"In line with the latter notion, 4-week treatment of rAAV-TRABID not only restored VPS34 expression and autophagy activity, but greatly alleviated HFD induced increase of liver and body weight and lipid accumulation in the liver, which was evident by gross anatomical view of the livers as well as H&E staining and Oil Red O staining of the liver sections."
ZRANB1 affects HECTD1
4 | 5 8
ZRANB1 binds HECTD1.
4 | 3 8
4 | 2 8

No evidence text available

No evidence text available

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"GST pull-down was also used to further validate the interaction between TRABID and HECTD1."
| PMC

sparser
"Together, our data identify TRABID-HECTD1 as the first DUB-E3 pair regulating K29-linked polyubiquitin chains."
| PMC

sparser
"Although we attempted to validate the interaction between endogenous TRABID and endogenous HECTD1, none of the four TRABID antibodies that we tried could detect endogenous TRABID (Data not shown)."
| PMC

sparser
"Thus, this study identifies HECTD1 as a mammalian E3 ligase that assembles branched K29/K48 chains and also establishes TRABID-HECTD1 as a DUB/E3 pair regulating K29 linkages."
| PMC

reach
"Although we attempted to validate the interaction between endogenous TRABID and endogenous HECTD1, none of the four TRABID antibodies that we tried could detect endogenous TRABID (Data not shown)."
| PMC

No evidence text available

sparser
"Thus, this study identifies HECTD1 as a mammalian E3 ligase that assembles branched K29/K48 chains and also establishes TRABID-HECTD1 as a DUB/E3 pair regulating K29 linkages."

sparser
"Thus, this study identifies HECTD1 as a mammalian E3 ligase which assembles branched K29/K48 chains and also establishes TRABID-HECTD1 as a DUB/E3 pair regulating K29 linkages."
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"Additionally, it was shown that the Trabid, Hectd1, and APC complex interacts with proteins composing the striatin interacting phosphatase and kinase (STRIPAK) complex that regulates cortical actin cytoskeleton dynamics [XREF_BIBR]."
ZRANB1 ubiquitinates HECTD1.
| 1
ZRANB1 ubiquitinates HECTD1. 1 / 1
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"Having established that TRABID NZF 1 to 3 is required for binding HECTD1 in cells and that catalytic dead TRABID traps polyubiquitinated HECTD1, we then validated this data in the context of HECTD1 's newly identified ubiquitin ligase activity using a pull-down approach (XREF_FIG, C and D; Fig.S3)."
| PMC
ZRANB1 increases the amount of HECTD1.
| 1
ZRANB1 increases the amount of HECTD1. 1 / 1
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"Importantly, this decrease in HECTD1 protein levels could be rescued by re-expression of pEGFP-TRABID WT but not pEGFP-Empty vector alone, indicating that TRABID directly regulates HECTD1 levels (XREF_FIG D)."
| PMC
EZH2 affects ZRANB1
| 7 10
EZH2 binds ZRANB1.
| 5 10
| 5 9

sparser
"ZRANB1 binds, deubiquitinates, and stabilizes EZH2."

sparser
"Based on the result of a previous study, we found that binding of zinc finger RANBP2-type containing 1 (ZRANB1) to EZH2 led to EZH2 deubiquitination, thereby stabilizing EZH2 protein expression in breast cancer [ xref ]."

reach
"ZRANB1 binds, deubiquitinates, and stabilizes EZH2."

sparser
"Deletion analysis using various truncation mutants (M1, NZFs; M2, NZFs + AnkUBD; M3, AnkUBD + OTU; xref ) demonstrated that the OTU domain not only mediated the physical interaction of ZRANB1 with EZH2 ( xref ) but also was required for the stabilization of EZH2 by ZRANB1 ( xref )."

sparser
"Moreover, CoIP assay indicated that FAM83C-AS1 depletion inhibited the association of ZRANB1 with EZH2 ( xref )."

sparser
"Previous studies have revealed that ZRANB1 binding to EZH2 resulted in EZH2 deubiquitination and thereby stabilized EZH2 protein in breast cancer [ xref ]."

sparser
"ZRANB1 binds, deubiquitinates, and stabilizes EZH2."

reach
"ZRANB1 binds, deubiquitinates, and stabilizes EZH2."

reach
"They demonstrated that ZRANB1 can bind, deubiquitinate, and stabilize EZH2, which enhances breast cancer tumorigenesis and metastasis."

sparser
"Furthermore, binding-domain mapping analysis showed that both the N-terminal region (EID + D1) and the CXC domain of EZH2 could interact with ZRANB1 ( xref , xref )."
| 1

sparser
"Furthermore, we observed the interaction of ZRANB1 with endogenous EZH2 and SUZ12 ( xref ) and, reciprocally, the interaction of either exogenous ( xref ) or endogenous ( xref ) EZH2 with endogenous ZRANB1, SUZ12, and EED, suggesting that ZRANB1 may regulate EZH2 that is present in the PRC2."
EZH2 inhibits ZRANB1.
| 1
EZH2 inhibits ZRANB1. 1 / 1
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"Interestingly, knockdown of EZH2 impaired but did not abolish the interaction of ZRANB1 with SUZ12, RBBP4, and EED (XREF_SUPPLEMENTARY), indicating that EZH2 partially mediates the association of ZRANB1 with the PRC2."
EZH2 activates ZRANB1.
| 1
EZH2 activates ZRANB1. 1 / 1
| 1

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"Interestingly, knockdown of EZH2 impaired but did not abolish the interaction of ZRANB1 with SUZ12, RBBP4, and EED (XREF_SUPPLEMENTARY), indicating that EZH2 partially mediates the association of ZRANB1 with the PRC2."
HECTD1 affects ZRANB1
4 | 3 8
4 | 2 8

No evidence text available

No evidence text available

reach
"GST pull-down was also used to further validate the interaction between TRABID and HECTD1."
| PMC

sparser
"Together, our data identify TRABID-HECTD1 as the first DUB-E3 pair regulating K29-linked polyubiquitin chains."
| PMC

sparser
"Although we attempted to validate the interaction between endogenous TRABID and endogenous HECTD1, none of the four TRABID antibodies that we tried could detect endogenous TRABID (Data not shown)."
| PMC

sparser
"Thus, this study identifies HECTD1 as a mammalian E3 ligase that assembles branched K29/K48 chains and also establishes TRABID-HECTD1 as a DUB/E3 pair regulating K29 linkages."
| PMC

reach
"Although we attempted to validate the interaction between endogenous TRABID and endogenous HECTD1, none of the four TRABID antibodies that we tried could detect endogenous TRABID (Data not shown)."
| PMC

No evidence text available

sparser
"Thus, this study identifies HECTD1 as a mammalian E3 ligase that assembles branched K29/K48 chains and also establishes TRABID-HECTD1 as a DUB/E3 pair regulating K29 linkages."

sparser
"Thus, this study identifies HECTD1 as a mammalian E3 ligase which assembles branched K29/K48 chains and also establishes TRABID-HECTD1 as a DUB/E3 pair regulating K29 linkages."
| 1

reach
"Additionally, it was shown that the Trabid, Hectd1, and APC complex interacts with proteins composing the striatin interacting phosphatase and kinase (STRIPAK) complex that regulates cortical actin cytoskeleton dynamics [XREF_BIBR]."
ZRANB1 affects APC
2 | 7 2
ZRANB1 binds APC.
2 | 4 2
2 | 3 2

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"Trabid binds to and deubiquitylates APC."

sparser
"TRABID binds APC but rather then antagonizing the proteasomal turnover of APC TRABID inhibits APC activity through preferential deubiquitination of K63 linked ubiquitin chains."

reach
"However, the direct interaction between APC and TRABID was not detected [XREF_BIBR]."

sparser
"However, the direct interaction between APC and TRABID was not detected [ xref ]."

reach
"TRABID binds APC but rather then antagonizing the proteasomal turnover of APC TRABID inhibits APC activity through preferential deubiquitination of K63 linked ubiquitin chains."

No evidence text available

No evidence text available
| 1

reach
"Additionally, it was shown that the Trabid, Hectd1, and APC complex interacts with proteins composing the striatin interacting phosphatase and kinase (STRIPAK) complex that regulates cortical actin cytoskeleton dynamics [XREF_BIBR]."
ZRANB1 deubiquitinates APC.
| 2
ZRANB1 deubiquitinates APC. 2 / 2
| 2

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"Trabid binds to and deubiquitylates APC."

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"For example, Trabid and Cezanne, both deubiquitinating (DUB) enzymes, antagonize the ubiquitination of APC, resulting in activation of beta-catenin and TCF-mediated transcription."
ZRANB1 inhibits APC.
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ZRANB1 bound to APC inhibits APC. 1 / 1
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"TRABID binds APC but rather then antagonizing the proteasomal turnover of APC TRABID inhibits APC activity through preferential deubiquitination of K63 linked ubiquitin chains."
ZRANB1 affects TWIST1
| 10
ZRANB1 binds TWIST1.
| 8
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sparser
"It was observed that GST-full-length (FL) Trabid and Trabid (1–354) strongly interacted with Twist1, whereas GST-Trabid (355–708) showed no interaction (Fig.  xref ), indicating that the N-terminal of Trabid should contain a primary interaction domain for Twist1."

sparser
"Mechanistically, Trabid forms a complex with Twist1 and specifically cleaves RNF8-induced K63-linked poly-ubiquitin chains from Twist1, which enhances the association of Twist1 with β-TrCP1 and allows for subsequent K48-linked ubiquitination of Twist1."

sparser
"Chromatin immunoprecipitation (ChIP) further confirmed that Twist1 directly binds to the Trabid promoter in HCC cells (Fig.  xref ) and clinical HCC tissues (Fig.  xref )."

sparser
"It suggests that Trabid-Twist1 inverse regulation in HCC was associated with reduced survival, and that Trabid downregulation in combination with RNF8 or Twist1 overexpression is a stronger predictor of poor survival than Trabid alone (Fig.  xref )."

sparser
"Thus, we concluded that Trabid directly interacts with Twist1."

sparser
"To elucidate the mechanisms by which Trabid suppresses Twist1, we firstly examined the interaction between Trabid and Twist1."

sparser
"We demonstrate the following: (1) Trabid expression is significantly downregulated in HCC cell lines and two independent cohorts of HCC patients’ tissues; (2) Trabid expression is negatively correlated with pathological grading, recurrence, and poor survival; (3) Reintroduction of Trabid in HCC cells significantly decreases HCC growth and pulmonary metastasis; (4) The inhibitory effect of Trabid on HCC development occurs at least partially through regulation of Twist1 activity; (5) Trabid forms a complex with Twist1 and specifically cleaves RNF8-induced K63-linked poly-ubiquitin chains from Twist1, which enhances the association of Twist1 with β-TrCP1 and allows for subsequent K48-linked ubiquitination of Twist1; (6) AKT-mediated phosphorylation at Ser78/Thr117 is essential for the role of Trabid in negatively regulating Twist1 signaling; and (7) Twist1 negatively regulates the promoter activity of Trabid, indicating a double-negative feedback loop."
| 1

sparser
"We also demonstrated that Trabid mainly interacted with the FL and the 169–202 amino acid fragment (Twist1 box domain) of GST-Twist1, but not with other Twist1 fragments and GST alone (Fig.  xref )."
ZRANB1 inhibits TWIST1.
| 2
| 2

sparser
"Trabid inactivates Twist1 by cleaving RNF8-mediated Twist1 K63-linked ubiquitination."

sparser
"Taken together, Trabid inactivates Twist1 by cleaving RNF8-mediated Twist1 K63-linked ubiquitination, facilitating the complex formation of β-TrCP1 with Twist1, whereby enhancing K48-linked ubiquitination of Twist1 by β-TrCP1."
ZRANB1 affects IL12
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ZRANB1 activates IL12.
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ZRANB1 activates IL12. 6 / 6
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"Our data further suggested that Trabid mediated IL-12 and IL-23 induction plays an important role in mediating inflammatory T cell responses and the pathogenesis of EAE, an animal model of the autoimmune neuroinflammatory disease multiple sclerosis."

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"DC-conditional deletion of Trabid impairs IL-12 and IL-23 production in DCs and the generation of Th1 and Th17 subsets of inflammatory T cells, rendering mice refractory to the induction of EAE 180."

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"To elucidate the molecular mechanism by which Trabid mediates induction of IL-12 family of cytokines, we examined the role of Trabid in regulating TLR mediated activation of MAP kinases (MAPKs), IkappaB kinase (IKK) and downstream transcription factors known to regulate Il12 and Il23 gene induction XREF_BIBR, XREF_BIBR, XREF_BIBR."

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"Conditional deletion of Zranb1 in dendritic cells impairs IL-12 and IL-23 production and the generation of T 1 and T 17 subsets of inflammatory T cells, rendering mice refractory to the induction of experimental autoimmune encephalomyelitis (EAE) ."

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"Conditional deletion of Zranb1 in dendritic cells impairs IL-12 and IL-23 production and the generation of T H 1 and T H 17 subsets of inflammatory T cells, rendering mice refractory to the induction of experimental autoimmune encephalomyelitis (EAE) 191 ."

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"Collectively, these results suggest that Trabid mediates induction of IL-12 and IL-23, thereby promoting T H 1 and T H 17 differentiation."
ZRANB1 inhibits IL12.
| 2
ZRANB1 inhibits IL12. 2 / 2
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"Moreover ZRANB1 deficiency in macrophages and dendritic cells impairs the induction of IL-12 and IL-23 by the regulation of histone modifications at the IL-12 promoter, indicating a role of ZRANB1 in mediating inflammatory responses 18 and macrophage activation 19."
| PMC

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"By employing a gene targeting approach, we show that Trabid deficiency in DCs and macrophages impaired the induction of Il12 and Il23 genes without affecting the induction of many other cytokine genes."
ZRANB1 increases the amount of IL12.
| 1
ZRANB1 increases the amount of IL12. 1 / 1
| 1

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"Deletion of Zranb1 (which encodes Trabid) in dendritic cells inhibited induction of the expression of Il12 and Il23 by Toll like receptors (TLRs), which impaired the differentiation of inflammatory T cells and protected mice from autoimmune inflammation."
TWIST1 affects ZRANB1
| 1 8
TWIST1 binds ZRANB1.
| 8
| 7

sparser
"It was observed that GST-full-length (FL) Trabid and Trabid (1–354) strongly interacted with Twist1, whereas GST-Trabid (355–708) showed no interaction (Fig.  xref ), indicating that the N-terminal of Trabid should contain a primary interaction domain for Twist1."

sparser
"Mechanistically, Trabid forms a complex with Twist1 and specifically cleaves RNF8-induced K63-linked poly-ubiquitin chains from Twist1, which enhances the association of Twist1 with β-TrCP1 and allows for subsequent K48-linked ubiquitination of Twist1."

sparser
"Chromatin immunoprecipitation (ChIP) further confirmed that Twist1 directly binds to the Trabid promoter in HCC cells (Fig.  xref ) and clinical HCC tissues (Fig.  xref )."

sparser
"It suggests that Trabid-Twist1 inverse regulation in HCC was associated with reduced survival, and that Trabid downregulation in combination with RNF8 or Twist1 overexpression is a stronger predictor of poor survival than Trabid alone (Fig.  xref )."

sparser
"Thus, we concluded that Trabid directly interacts with Twist1."

sparser
"To elucidate the mechanisms by which Trabid suppresses Twist1, we firstly examined the interaction between Trabid and Twist1."

sparser
"We demonstrate the following: (1) Trabid expression is significantly downregulated in HCC cell lines and two independent cohorts of HCC patients’ tissues; (2) Trabid expression is negatively correlated with pathological grading, recurrence, and poor survival; (3) Reintroduction of Trabid in HCC cells significantly decreases HCC growth and pulmonary metastasis; (4) The inhibitory effect of Trabid on HCC development occurs at least partially through regulation of Twist1 activity; (5) Trabid forms a complex with Twist1 and specifically cleaves RNF8-induced K63-linked poly-ubiquitin chains from Twist1, which enhances the association of Twist1 with β-TrCP1 and allows for subsequent K48-linked ubiquitination of Twist1; (6) AKT-mediated phosphorylation at Ser78/Thr117 is essential for the role of Trabid in negatively regulating Twist1 signaling; and (7) Twist1 negatively regulates the promoter activity of Trabid, indicating a double-negative feedback loop."
| 1

sparser
"We also demonstrated that Trabid mainly interacted with the FL and the 169–202 amino acid fragment (Twist1 box domain) of GST-Twist1, but not with other Twist1 fragments and GST alone (Fig.  xref )."
TWIST1 inhibits ZRANB1.
| 1
| 1

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"Interestingly, Twist1 negatively regulates the promoter activity of Trabid, indicating that a double negative feedback loop exists."
MIB2 affects ZRANB1
| 5 4
MIB2 binds ZRANB1.
| 4 3
| 4

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"Since both Mib and Mib2 can bind to Fih-1 and Trabid, we next asked whether Mib and Mib2 could promote the most C-terminal RF dependent substrate ubiquitylation."

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"Mib and Mib2 interact with deubiquitylases Usp1, Usp9 and Trabid."

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"Usp1, Usp9, Trabid and Fih-1 also bound to zebrafish Mib2, a Mib homolog with similar structural domains and functions."

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"The interaction of Usp1, Usp9, Trabid, Fih-1 and Mib and Mib2 were confirmed by immunoprecipitation."
| 1

sparser
"Since both Mib and Mib2 can bind to Fih-1 and Trabid, we next asked whether Mib and Mib2 could promote the most C-terminal RF-dependent substrate ubiquitylation."
| 1

sparser
"Mib and Mib2 interact with deubiquitylases Usp1, Usp9 and Trabid."
| 1

sparser
"Usp1, Usp9, Trabid and Fih-1 also bound to zebrafish Mib2, a Mib homolog with similar structural domains and functions."
MIB2 ubiquitinates ZRANB1.
| 1 1
MIB2 ubiquitinates ZRANB1. 2 / 2
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"Both Mib and Mib2 can ubiquitylate Trabid and Fih-1, indicating a potential regulating role of Mib and Mib2 on Trabid and Fih-1 and, furthermore, the possible involvement of Notch signaling in hypoxia regulated differentiation, tumorigenesis and NF-kappaB pathway."

sparser
"Both Mib and Mib2 facilitated Fih-1 and Trabid C ubiquitylation ( xref , lanes 2, 4), while the E3 ligase-inactivated Mib ta52b or Mib2RF12m failed to do so ( xref , lanes 3, 5)."
APC affects ZRANB1
2 | 5 2
APC binds ZRANB1.
2 | 4 2
2 | 3 2

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"Trabid binds to and deubiquitylates APC."

sparser
"TRABID binds APC but rather then antagonizing the proteasomal turnover of APC TRABID inhibits APC activity through preferential deubiquitination of K63 linked ubiquitin chains."

reach
"However, the direct interaction between APC and TRABID was not detected [XREF_BIBR]."

sparser
"However, the direct interaction between APC and TRABID was not detected [ xref ]."

reach
"TRABID binds APC but rather then antagonizing the proteasomal turnover of APC TRABID inhibits APC activity through preferential deubiquitination of K63 linked ubiquitin chains."

No evidence text available

No evidence text available
| 1

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"Additionally, it was shown that the Trabid, Hectd1, and APC complex interacts with proteins composing the striatin interacting phosphatase and kinase (STRIPAK) complex that regulates cortical actin cytoskeleton dynamics [XREF_BIBR]."
APC activates ZRANB1.
| 1
APC activates ZRANB1. 1 / 1
| 1

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"Although it is not clear if APC is the sole target of Trabid, this finding is consistent with the suggestion that K63 linked ubiquitination of APC antagonizes Wnt signaling, presumably by potentiating APC activity."
ZRANB1 affects MIB2
| 4 3
| 4

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"Since both Mib and Mib2 can bind to Fih-1 and Trabid, we next asked whether Mib and Mib2 could promote the most C-terminal RF dependent substrate ubiquitylation."

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"Mib and Mib2 interact with deubiquitylases Usp1, Usp9 and Trabid."

reach
"Usp1, Usp9, Trabid and Fih-1 also bound to zebrafish Mib2, a Mib homolog with similar structural domains and functions."

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"The interaction of Usp1, Usp9, Trabid, Fih-1 and Mib and Mib2 were confirmed by immunoprecipitation."
| 1

sparser
"Since both Mib and Mib2 can bind to Fih-1 and Trabid, we next asked whether Mib and Mib2 could promote the most C-terminal RF-dependent substrate ubiquitylation."
| 1

sparser
"Mib and Mib2 interact with deubiquitylases Usp1, Usp9 and Trabid."
| 1

sparser
"Usp1, Usp9, Trabid and Fih-1 also bound to zebrafish Mib2, a Mib homolog with similar structural domains and functions."
Gag affects ZRANB1
| 6
| 2

sparser
"To understand the structural basis of selective interaction between TRABID NZF1 and K29 chains, we determined the structure of TRABID NZF1 in complex with K29-linked diUb."

sparser
"K29 is in close proximity to the tail of the distal Ub, and it is conceivable that K29-linked polymers interact with TRABID NZF1 in a similar manner and can form similar filaments."
ZRANB1 binds pol, gag, and NZF1. 2 / 2
| 2

sparser
"Although mutation of T25 to alanine does not affect TRABID-NZF1 binding to K29 or K33 chains ( xref F), the corresponding residue in TAB2 (E685) interacts with the proximal Ub and is important for binding K63 chains ( xref )."

sparser
"We have established a method to investigate K29 chains in cells that relies on TRABID-NZF1 binding to K29 and K33 chains and subsequent cleavage with a DUB that does not hydrolyze K29 linkages ( xref A)."
ZRANB1 binds UBD and gag. 1 / 1
| 1

sparser
"We found that the TRABID N terminus, which contains three Npl4-type zinc finger (NZF) UBDs, specifically binds K29- and K33-linked diUb, and specificity can be attributed to the first NZF domain (NZF1)."
ZRANB1 binds pol and gag. 1 / 1
| 1

sparser
"Indeed, mutation of T14, Y15, or M26 to alanine is sufficient to disrupt the binding of TRABID NZF1 to K29 and K33 chains ( xref E)."
ZRANB1 affects Wnt
| 5
ZRANB1 activates Wnt.
| 3
ZRANB1 activates Wnt. 3 / 3
| 3

reach
"Although Trabid was first reported to activate the Wnt pathway by cleavage of the K63 linked chains, it was recently demonstrated to be 40-fold more active toward the K29 linked chains."

reach
"TRABID, one of K63 specific DUB enzymes, became an attractive candidate to achieve this task since it has been reported to regulate Wnt signal positively [XREF_BIBR], as inhibition of TRABID presumably decreases Wnt signaling activity."

reach
"However, in this study, we failed to confirm the notion that TRABID positively regulates canonical Wnt signaling based on several lines of evidence."
ZRANB1 inhibits Wnt.
| 1
ZRANB1 inhibits Wnt. 1 / 1
| 1

reach
"Knockdown of TRABID with RNAi resulted in downregulated expression of canonical Wnt target genes and decreased Wnt transcription activity, whereas its knockdown does not affect TNF-2 pathway [XREF_BIBR]."
ZRANB1 decreases the amount of Wnt.
| 1
ZRANB1 decreases the amount of Wnt. 1 / 1
| 1

reach
"Secondly, the TRABID shRNAs failed to downregulate Wnt and beta-catenin-mediated transcription activity or endogenous Wnt target gene Axin2 mRNA levels in these tumor cells."
ZRANB1 affects Ubiquitin
| 1 4
| 1 2

sparser
"Although TRABID NZF1 interacts with both proximal and distal Ub, it does not directly recognize the K29-linked isopeptide bond of the diUb."

reach
"The proximal Ub is bound by TRABID NZF1 in an unusual way, at a binding site involving the start of the Ub alpha helix and two nearby loop regions (XREF_FIG A)."

sparser
"Thus in the NZF1 of TRABID, residues T14, Y15, and M26 interact with the distal Ub, and these residues are conserved in evolution ( xref D)."

sparser
"Whereas the NZF motif of TAB2, TAB3 and ZRANB1 binds ubiquitin though a conserved TY/F motif (T674, F675 in TAB2), the NZF motif of RANBP2 does not associate with ubiquitin, due to the divergence of the TY/F motif to LV (L1489, V1490) ( xref , blue box) ( xref )."
Ubiquitin binds ZRANB1 and ANK. 1 / 1
| 1

sparser
"This confirmed that the Ank domain of TRABID interacts with Ub."
ZRANB1 affects USP9X
| 1 4
| 1

sparser
"The interaction of Usp1, Usp9, Trabid, Fih-1 and Mib/Mib2 were confirmed by immunoprecipitation."
| 1

reach
"The interaction of Usp1, Usp9, Trabid, Fih-1 and Mib and Mib2 were confirmed by immunoprecipitation."
| 1

sparser
"Mib and Mib2 interact with deubiquitylases Usp1, Usp9 and Trabid."
| 1

sparser
"Usp1, Usp9, Trabid and Fih-1 also bound to zebrafish Mib2, a Mib homolog with similar structural domains and functions."
| 1

sparser
"In this study, we demonstrated that Usp1, Usp9 and Trabid are interacting proteins of Mib and Mib2 by yeast two-hybrid and immunoprecipitation."
ZRANB1 affects USP1
| 1 4
| 1

sparser
"The interaction of Usp1, Usp9, Trabid, Fih-1 and Mib/Mib2 were confirmed by immunoprecipitation."
| 1

sparser
"Mib and Mib2 interact with deubiquitylases Usp1, Usp9 and Trabid."
| 1

sparser
"Usp1, Usp9, Trabid and Fih-1 also bound to zebrafish Mib2, a Mib homolog with similar structural domains and functions."
| 1

reach
"The interaction of Usp1, Usp9, Trabid, Fih-1 and Mib and Mib2 were confirmed by immunoprecipitation."
| 1

sparser
"In this study, we demonstrated that Usp1, Usp9 and Trabid are interacting proteins of Mib and Mib2 by yeast two-hybrid and immunoprecipitation."
ZRANB1 affects TRAF6
2 1 | 1
2 1 |

No evidence text available

No evidence text available

No evidence text available
| 1

sparser
"Co-immunoprecipitation studies indicated that TRAF6 was able to interact with both Cezanne and TRABID."
ZRANB1 affects KDM4D
| 5
ZRANB1 deubiquitinates KDM4D.
| 2
ZRANB1 leads to the deubiquitination of KDM4D. 2 / 2
| 2

reach
"When transfected into HEK293 cells, wild-type Trabid, but not C443A Trabid, inhibited Jmjd2d ubiquitination (XREF_FIG), and the transfected Jmjd2d was abundantly conjugated with both K11- and K29 linked polyubiquitin chains (XREF_FIG)."

reach
"DC-cKO BMDCs had markedly more abundant Jmjd2d ubiquitination than the wild-type BMDCs (XREF_FIG), suggesting that Trabid negatively regulated Jmjd2d ubiquitination."
ZRANB1 ubiquitinates KDM4D.
| 1
ZRANB1-C443A leads to the ubiquitination of KDM4D. 1 / 1
| 1

reach
"When transfected into HEK293 cells, wild-type Trabid, but not C443A Trabid, inhibited Jmjd2d ubiquitination (XREF_FIG), and the transfected Jmjd2d was abundantly conjugated with both K11- and K29 linked polyubiquitin chains (XREF_FIG)."
ZRANB1 binds KDM4D.
| 1
ZRANB1-C443A binds KDM4D. 1 / 1
| 1

reach
"Furthermore, both wild-type and C443A Trabid physically associated with endogenous Jmjd2d in reconstituted KO MEFs (XREF_FIG and XREF_SUPPLEMENTARY)."
ZRANB1 activates KDM4D.
| 1
ZRANB1 activates KDM4D. 1 / 1
| 1

reach
"TRABID promotes experimental autoimmune encephalitis (EAE) by stabilizing JMJD2D at the Il12 promoter, enhancing IL-12 production and immunopathology (91)."
Ubiquitin affects ZRANB1
| 1 4
| 1 2

sparser
"Although TRABID NZF1 interacts with both proximal and distal Ub, it does not directly recognize the K29-linked isopeptide bond of the diUb."

reach
"The proximal Ub is bound by TRABID NZF1 in an unusual way, at a binding site involving the start of the Ub alpha helix and two nearby loop regions (XREF_FIG A)."

sparser
"Thus in the NZF1 of TRABID, residues T14, Y15, and M26 interact with the distal Ub, and these residues are conserved in evolution ( xref D)."

sparser
"Whereas the NZF motif of TAB2, TAB3 and ZRANB1 binds ubiquitin though a conserved TY/F motif (T674, F675 in TAB2), the NZF motif of RANBP2 does not associate with ubiquitin, due to the divergence of the TY/F motif to LV (L1489, V1490) ( xref , blue box) ( xref )."
Ubiquitin binds ZRANB1 and ANK. 1 / 1
| 1

sparser
"This confirmed that the Ank domain of TRABID interacts with Ub."
USP9X affects ZRANB1
| 1 4
| 1

sparser
"The interaction of Usp1, Usp9, Trabid, Fih-1 and Mib/Mib2 were confirmed by immunoprecipitation."
| 1

reach
"The interaction of Usp1, Usp9, Trabid, Fih-1 and Mib and Mib2 were confirmed by immunoprecipitation."
| 1

sparser
"Mib and Mib2 interact with deubiquitylases Usp1, Usp9 and Trabid."
| 1

sparser
"Usp1, Usp9, Trabid and Fih-1 also bound to zebrafish Mib2, a Mib homolog with similar structural domains and functions."
| 1

sparser
"In this study, we demonstrated that Usp1, Usp9 and Trabid are interacting proteins of Mib and Mib2 by yeast two-hybrid and immunoprecipitation."
USP1 affects ZRANB1
| 1 4
| 1

sparser
"The interaction of Usp1, Usp9, Trabid, Fih-1 and Mib/Mib2 were confirmed by immunoprecipitation."
| 1

sparser
"Mib and Mib2 interact with deubiquitylases Usp1, Usp9 and Trabid."
| 1

sparser
"Usp1, Usp9, Trabid and Fih-1 also bound to zebrafish Mib2, a Mib homolog with similar structural domains and functions."
| 1

reach
"The interaction of Usp1, Usp9, Trabid, Fih-1 and Mib and Mib2 were confirmed by immunoprecipitation."
| 1

sparser
"In this study, we demonstrated that Usp1, Usp9 and Trabid are interacting proteins of Mib and Mib2 by yeast two-hybrid and immunoprecipitation."
TRAF6 affects ZRANB1
2 1 | 1
2 1 |

No evidence text available

No evidence text available

No evidence text available
| 1

sparser
"Co-immunoprecipitation studies indicated that TRAF6 was able to interact with both Cezanne and TRABID."
Pol affects ZRANB1
| 4
ZRANB1 binds pol, gag, and NZF1. 2 / 2
| 2

sparser
"Although mutation of T25 to alanine does not affect TRABID-NZF1 binding to K29 or K33 chains ( xref F), the corresponding residue in TAB2 (E685) interacts with the proximal Ub and is important for binding K63 chains ( xref )."

sparser
"We have established a method to investigate K29 chains in cells that relies on TRABID-NZF1 binding to K29 and K33 chains and subsequent cleavage with a DUB that does not hydrolyze K29 linkages ( xref A)."
ZRANB1 binds pol and gag. 1 / 1
| 1

sparser
"Indeed, mutation of T14, Y15, or M26 to alanine is sufficient to disrupt the binding of TRABID NZF1 to K29 and K33 chains ( xref E)."
| 1

sparser
"Validation of the TRABID-K33 Chain Interaction."

reach
"However, non TNBC cell lines, T47D (ER+HER 2-), ZR75-1 (ER+HER 2+), SKBR3 (ER-HER2+), and MCF7 (ER+HER 2-), showed variable responses : knockdown of ZRANB1 inhibited the proliferation of SKBR3 and MCF7 cells, but not T47D and ZR75-1 cells, even though EZH2 was downregulated (XREF_SUPPLEMENTARY)."

reach
"Ectopic expression of ZRANB1 in both LM2 cells (XREF_FIG) and HEK293T cells (XREF_SUPPLEMENTARY) markedly upregulated endogenous EZH2 protein and increased cell proliferation, which could be reversed by knockdown of EZH2."

reach
"TRABID targets DDB2 for deubiquitination to promote proliferation of hepatocellular carcinoma cells."

reach
"In contrast, depletion of ZRANB1 in TNBC cells markedly suppressed cell proliferation and migration and induced apoptosis, and systemic delivery of nanoliposome encapsulated ZRANB1 siRNA led to pronounced anticancer effects in xenograft models of TNBC, suggesting that ZRANB1 could be a novel therapeutic target."
ZRANB1 affects UVRAG
1 | 2 1
ZRANB1 binds UVRAG.
| 1 1
| 1

sparser
"Immunoprecipitation analysis revealed the association of TRABID with both ATG14 and UVRAG, along with the common subunits of VPS34 complex, in cells cultured in DMEM or EBSS (Supplementary Fig.  xref )."
| 1

reach
"Furthermore, GFP-ATG14 and GFP-UVRAG interacted with endogenous TRABID in transfected cells and these associations were not affected by starvation."
ZRANB1 inhibits UVRAG.
| 1
ZRANB1 inhibits UVRAG. 1 / 1
| 1

reach
"Among the subunits of VPS34 complex, TRABID overexpression reduced the ubiquitination level of transfected and endogenous VPS34, but not AMBRA1, Beclin-1, ATG14 and UVRAG."
ZRANB1 deubiquitinates UVRAG.
1 |
ZRANB1 deubiquitinates UVRAG. 1 / 1
1 |

"However, the deubiquitinase ZRANB1 specifically cleaves SMURF1-induced K29 and K33-linked polyubiquitin chains from UVRAG, thereby increasing the binding of UVRAG to RUBCN and inhibiting autophagy flux."
ZRANB1 affects PHF20
| 4
| 2

sparser
"The NZF domains however provide increased affinity for longer TRABID substrates that can bind simultaneously to AnkOTU and NZF domains ( xref )."

sparser
"The NZF domain of TRABID interacts with the I44-centered hydrophobic patch on the distal Ub ( xref B and 4C)."
| 1

sparser
"For example, NZF domains of TAB2 (TAK1 binding protein 2) or TRABID (TRAF binding domain) preferentially bind to Lys63- over Lys48-linked ubiquitin chains xref ."

sparser
"Whereas the NZF motif of TAB2, TAB3 and ZRANB1 binds ubiquitin though a conserved TY/F motif (T674, F675 in TAB2), the NZF motif of RANBP2 does not associate with ubiquitin, due to the divergence of the TY/F motif to LV (L1489, V1490) ( xref , blue box) ( xref )."
| 1 3
| 1 2

eidos
"We also demonstrated that ZRANB1 knockdown downregulated the expression of LOXL2 and suppressed HCC growth and metastasis in vitro and in vivo ."

reach
"More importantly, ZRANB1 regulated LOXL2 through specificity protein 1 (SP1) and SP1 overexpression rescued the suppression of HCC growth and metastasis induced by ZRANB1 knockdown."
ZRANB1 bound to EZH2 activates Neoplasm Metastasis. 1 / 1
| 1

reach
"They demonstrated that ZRANB1 can bind, deubiquitinate, and stabilize EZH2, which enhances breast cancer tumorigenesis and metastasis."
| 1

reach
"The reintroduction of Trabid expression in tumor cells significantly decreases HCC progression as well as pulmonary metastasis."
ZRANB1 affects IL23A
| 4
ZRANB1 activates IL23A.
| 3
ZRANB1 activates IL23A. 2 / 2
| 2

reach
"DC-conditional deletion of Trabid impairs IL-12 and IL-23 production in DCs and the generation of Th1 and Th17 subsets of inflammatory T cells, rendering mice refractory to the induction of EAE 180."

reach
"Collectively, these results suggest that Trabid mediates induction of IL-12 and IL-23, thereby promoting T H 1 and T H 17 differentiation."
ZRANB1-C443A activates IL23A. 1 / 1
| 1

reach
"In similar experiments using BMDCs, reconstitution of DC-cKO BMDCs with wild-type Trabid, but not C443A Trabid, rescued the induction of Il12a, Il12b, and Il23a genes (XREF_FIG)."
ZRANB1 increases the amount of IL23A.
| 1
ZRANB1 increases the amount of IL23A. 1 / 1
| 1

reach
"Deletion of Zranb1, the gene encoding Trabid, in dendritic cells inhibited the induction of IL-12 and IL-23 expression by Toll like receptors (TLR), impairing the differentiation of inflammatory T cells and protecting mice from autoimmune inflammation."
ZRANB1 affects HIF1AN
| 1 3
| 1

sparser
"Since both Mib and Mib2 can bind to Fih-1 and Trabid, we next asked whether Mib and Mib2 could promote the most C-terminal RF-dependent substrate ubiquitylation."
| 1

sparser
"The interaction of Usp1, Usp9, Trabid, Fih-1 and Mib/Mib2 were confirmed by immunoprecipitation."
| 1

sparser
"Usp1, Usp9, Trabid and Fih-1 also bound to zebrafish Mib2, a Mib homolog with similar structural domains and functions."
| 1

reach
"The interaction of Usp1, Usp9, Trabid, Fih-1 and Mib and Mib2 were confirmed by immunoprecipitation."
ZRANB1 affects GST
| 4
| 3

sparser
"Polyubiquitinated His 6 -HECTD1 CD , generated in vitro , could be efficiently enriched for by GST-TRABID NZF 1 to 3 pull-down but not GST alone ( xref D , lane 14 versus 9)."
| PMC

sparser
"GST-TRABID NZF 1 to 3 pull-down showed a faint signal for HERC2 further suggestive of a very weak interaction ( xref A )."
| PMC

sparser
"GST-TRABID NZF 1 to 3, but not its ubiquitin binding deficient mutant GST-TRABID NZF 1 to 3 TY>LV nor GST alone, could enrich for high-molecular-weight ubiquitin chains as well as endogenous HECTD1 ( xref A , lane 3)."
| PMC
| 1

sparser
"We also demonstrated that Trabid mainly interacted with the FL and the 169–202 amino acid fragment (Twist1 box domain) of GST-Twist1, but not with other Twist1 fragments and GST alone (Fig.  xref )."
ZRANB1 affects DDB2
| 2 2
ZRANB1 binds DDB2.
| 1 2
| 2

sparser
"Immunoprecipitation assay showed that the interaction of TRABID and DDB2 is mediated by their OTU domain and N-terminal region, respectively."

sparser
"Thus, our data revealed a critical role of the TRABID-DDB2 axis in the proliferation of hepatocellular carcinoma cells."
ZRANB1 binds DDB2 and OTU domain. 1 / 1
| 1

reach
"Immunoprecipitation assay showed that the interaction of TRABID and DDB2 is mediated by their OTU domain and N-terminal region, respectively."
ZRANB1 deubiquitinates DDB2.
| 1
ZRANB1 deubiquitinates DDB2. 1 / 1
| 1

reach
"Furthermore, TRABID deubiquitinates DDB2, and this deubiquitination effect of TRABID depends on its active site."
ZRANB1 affects ATG14
| 3 1
ZRANB1 binds ATG14.
| 1 1
| 1

sparser
"Immunoprecipitation analysis revealed the association of TRABID with both ATG14 and UVRAG, along with the common subunits of VPS34 complex, in cells cultured in DMEM or EBSS (Supplementary Fig.  xref )."
| 1

reach
"Furthermore, GFP-ATG14 and GFP-UVRAG interacted with endogenous TRABID in transfected cells and these associations were not affected by starvation."
ZRANB1 inhibits ATG14.
| 1
ZRANB1 inhibits ATG14. 1 / 1
| 1

reach
"Among the subunits of VPS34 complex, TRABID overexpression reduced the ubiquitination level of transfected and endogenous VPS34, but not AMBRA1, Beclin-1, ATG14 and UVRAG."
ZRANB1 activates ATG14.
| 1
ZRANB1 activates ATG14. 1 / 1
| 1

reach
"However, TRABID knockdown diminished DFCP1 puncta, ATG16 puncta, and ATG14 puncta."
USP9X affects USP1
| 4
| 1

sparser
"The interaction of Usp1, Usp9, Trabid, Fih-1 and Mib/Mib2 were confirmed by immunoprecipitation."
| 1

sparser
"Mib and Mib2 interact with deubiquitylases Usp1, Usp9 and Trabid."
| 1

sparser
"Usp1, Usp9, Trabid and Fih-1 also bound to zebrafish Mib2, a Mib homolog with similar structural domains and functions."
| 1

sparser
"In this study, we demonstrated that Usp1, Usp9 and Trabid are interacting proteins of Mib and Mib2 by yeast two-hybrid and immunoprecipitation."
PIK3C3 affects ZRANB1
| 4
| 3

sparser
"Consistent with the deubiquitination effect of TRABID on VPS34, endogenous TRABID interacted with endogenous VPS34 (Fig.  xref )."

sparser
"Furthermore, baculovirally purified recombinant TRABID and VPS34 interacted in vitro (Fig.  xref )."

sparser
"The interaction of TRABID with VPS34, however, was not altered under these conditions (Supplementary Fig.  xref )."
| 1

sparser
"However, no association of TRABID with Rubicon, which forms a VPS34 complex with autophagy-inhibitory function xref , could be detected (Supplementary Fig.  xref )."
PIEZO1 affects ZRANB1
| 4
PIEZO1 binds ZRANB1.
| 3
| 3

reach
"The interaction of Usp1, Usp9, Trabid, Fih-1 and Mib and Mib2 were confirmed by immunoprecipitation."

reach
"Mib and Mib2 interact with deubiquitylases Usp1, Usp9 and Trabid."

reach
"Since both Mib and Mib2 can bind to Fih-1 and Trabid, we next asked whether Mib and Mib2 could promote the most C-terminal RF dependent substrate ubiquitylation."
PIEZO1 ubiquitinates ZRANB1.
| 1
PIEZO1 ubiquitinates ZRANB1. 1 / 1
| 1

reach
"Both Mib and Mib2 can ubiquitylate Trabid and Fih-1, indicating a potential regulating role of Mib and Mib2 on Trabid and Fih-1 and, furthermore, the possible involvement of Notch signaling in hypoxia regulated differentiation, tumorigenesis and NF-kappaB pathway."
PHF20 affects ZRANB1
| 4
| 2

sparser
"The NZF domains however provide increased affinity for longer TRABID substrates that can bind simultaneously to AnkOTU and NZF domains ( xref )."

sparser
"The NZF domain of TRABID interacts with the I44-centered hydrophobic patch on the distal Ub ( xref B and 4C)."
| 1

sparser
"For example, NZF domains of TAB2 (TAK1 binding protein 2) or TRABID (TRAF binding domain) preferentially bind to Lys63- over Lys48-linked ubiquitin chains xref ."

sparser
"Whereas the NZF motif of TAB2, TAB3 and ZRANB1 binds ubiquitin though a conserved TY/F motif (T674, F675 in TAB2), the NZF motif of RANBP2 does not associate with ubiquitin, due to the divergence of the TY/F motif to LV (L1489, V1490) ( xref , blue box) ( xref )."
ZRANB1 is modified
| 4
ZRANB1 is phosphorylated.
| 3
ZRANB1 is phosphorylated on S78. 1 / 1
| 1

sparser
"Notably, the stimulating effect of AKT on the activity of Trabid was substantially inhibited by S78A/T117A mutation (Fig.  xref ), suggesting that the phosphorylation of Trabid at S78 and T117 is an important regulatory mechanism for its activity."
ZRANB1 is phosphorylated on T117. 1 / 1
| 1

sparser
"Notably, the stimulating effect of AKT on the activity of Trabid was substantially inhibited by S78A/T117A mutation (Fig.  xref ), suggesting that the phosphorylation of Trabid at S78 and T117 is an important regulatory mechanism for its activity."
ZRANB1 is phosphorylated. 1 / 1
| 1

sparser
"In vitro kinase assay clearly demonstrated that co-incubation of recombinant Trabid and activated AKT led to Trabid phosphorylation (Fig.  xref )."
ZRANB1 is ubiquitinated.
| 1
ZRANB1 is ubiquitinated. 1 / 1
| 1

sparser
"Both Mib and Mib2 can ubiquitylate Trabid and Fih-1, indicating a potential regulating role of Mib and Mib2 on Trabid and Fih-1 and, furthermore, the possible involvement of Notch signaling in hypoxia-regulated differentiation, tumorigenesis and NF-κB pathway."
HIF1AN affects ZRANB1
| 1 3
| 1

sparser
"Since both Mib and Mib2 can bind to Fih-1 and Trabid, we next asked whether Mib and Mib2 could promote the most C-terminal RF-dependent substrate ubiquitylation."
| 1

sparser
"The interaction of Usp1, Usp9, Trabid, Fih-1 and Mib/Mib2 were confirmed by immunoprecipitation."
| 1

sparser
"Usp1, Usp9, Trabid and Fih-1 also bound to zebrafish Mib2, a Mib homolog with similar structural domains and functions."
| 1

reach
"The interaction of Usp1, Usp9, Trabid, Fih-1 and Mib and Mib2 were confirmed by immunoprecipitation."
GST affects ZRANB1
| 4
| 3

sparser
"Polyubiquitinated His 6 -HECTD1 CD , generated in vitro , could be efficiently enriched for by GST-TRABID NZF 1 to 3 pull-down but not GST alone ( xref D , lane 14 versus 9)."
| PMC

sparser
"GST-TRABID NZF 1 to 3 pull-down showed a faint signal for HERC2 further suggestive of a very weak interaction ( xref A )."
| PMC

sparser
"GST-TRABID NZF 1 to 3, but not its ubiquitin binding deficient mutant GST-TRABID NZF 1 to 3 TY>LV nor GST alone, could enrich for high-molecular-weight ubiquitin chains as well as endogenous HECTD1 ( xref A , lane 3)."
| PMC
| 1

sparser
"We also demonstrated that Trabid mainly interacted with the FL and the 169–202 amino acid fragment (Twist1 box domain) of GST-Twist1, but not with other Twist1 fragments and GST alone (Fig.  xref )."
FAM83C-AS1 affects ZRANB1
| 4
FAM83C-AS1 binds ZRANB1.
| 3
ZRANB1 binds FAM83C-AS1. 3 / 3
| 3

reach
"Based on molecular mechanism related assays, we concluded that FAM83C-AS1 binding to ZRANB1 promoted EZH2 deubiquitination and thereby inhibited EZH2 downregulation, which led to the enhanced protein stability of EZH2 in CRC tumor cells."

reach
"Our data thus demonstrate that FAM83C-AS1 binds to ZRANB1 and stabilizes EZH2 protein in CRCs."

reach
"Subsequent RIP assays further validated that FAM83C-AS1 bound to ZRANB1 in RKO and SW620 cells (XREF_FIG)."
FAM83C-AS1 inhibits ZRANB1.
| 1
FAM83C-AS1 inhibits ZRANB1. 1 / 1
| 1

reach
"Moreover, CoIP assay indicated that FAM83C-AS1 depletion inhibited the association of ZRANB1 with EZH2 (XREF_FIG)."
CSNK1A1 affects ZRANB1
| 2 2
CSNK1A1 phosphorylates ZRANB1 on S209. 2 / 2
| 1 1

reach
"Interestingly, ZRANB1 is phosphorylated at Thr35, and Ser209 residues by CSNK1A1, and this phosphorylation activates its deubiquitinating activity."

sparser
"Interestingly, ZRANB1 is phosphorylated at Thr35, and Ser209 residues by CSNK1A1, and this phosphorylation activates its deubiquitinating activity."
CSNK1A1 phosphorylates ZRANB1 on T35. 2 / 2
| 1 1

reach
"Interestingly, ZRANB1 is phosphorylated at Thr35, and Ser209 residues by CSNK1A1, and this phosphorylation activates its deubiquitinating activity."

sparser
"Interestingly, ZRANB1 is phosphorylated at Thr35, and Ser209 residues by CSNK1A1, and this phosphorylation activates its deubiquitinating activity."
3 |
Valproic acid decreases the amount of ZRANB1.
2 |
Valproic acid decreases the amount of ZRANB1. 2 / 2
2 |

No evidence text available

No evidence text available
Valproic acid increases the amount of ZRANB1.
1 |
Valproic acid increases the amount of ZRANB1. 1 / 1
1 |

No evidence text available
Pol affects gag
| 3
ZRANB1 binds pol, gag, and NZF1. 2 / 2
| 2

sparser
"Although mutation of T25 to alanine does not affect TRABID-NZF1 binding to K29 or K33 chains ( xref F), the corresponding residue in TAB2 (E685) interacts with the proximal Ub and is important for binding K63 chains ( xref )."

sparser
"We have established a method to investigate K29 chains in cells that relies on TRABID-NZF1 binding to K29 and K33 chains and subsequent cleavage with a DUB that does not hydrolyze K29 linkages ( xref A)."
ZRANB1 binds pol and gag. 1 / 1
| 1

sparser
"Indeed, mutation of T14, Y15, or M26 to alanine is sufficient to disrupt the binding of TRABID NZF1 to K29 and K33 chains ( xref E)."

eidos
"TRABID diminishes the K29 / K48 ubiquitination on VPS34 and promotes autophagosome maturation ."

eidos
"Thus , besides autophagosome formation , TRABID promotes autophagosome maturation ."

eidos
"We found that TRABID knockdown decreased autophagosome maturation into autolysosome , whereas TRABID overexpression enhanced it ( Fig. 2n , o and Supplementary Fig. 2j , k ) ."
| 2

reach
"In contrast, depletion of ZRANB1 in TNBC cells markedly suppressed cell proliferation and migration and induced apoptosis, and systemic delivery of nanoliposome encapsulated ZRANB1 siRNA led to pronounced anticancer effects in xenograft models of TNBC, suggesting that ZRANB1 could be a novel therapeutic target."

reach
"Moreover, ZRANB1 knockdown reduced glaucoma induced RGC apoptosis."
| 1

reach
"In addition, knockdown of ZRANB1 in MDA-MB-231 cells increased early apoptosis and late apoptosis (cell death) by 3-fold and 9-fold, respectively (XREF_SUPPLEMENTARY)."
ZRANB1 affects SUZ12
| 1 2
| 1

sparser
"Interestingly, knockdown of EZH2 impaired but did not abolish the interaction of ZRANB1 with SUZ12, RBBP4, and EED ( xref ), indicating that EZH2 partially mediates the association of ZRANB1 with the PRC2."
| 1

reach
"Furthermore, we observed the interaction of ZRANB1 with endogenous EZH2 and SUZ12 (XREF_SUPPLEMENTARY) and, reciprocally, the interaction of either exogenous (XREF_SUPPLEMENTARY) or endogenous (XREF_FIG) EZH2 with endogenous ZRANB1, SUZ12, and EED, suggesting that ZRANB1 may regulate EZH2 that is present in the PRC2."
| 1

sparser
"Furthermore, we observed the interaction of ZRANB1 with endogenous EZH2 and SUZ12 ( xref ) and, reciprocally, the interaction of either exogenous ( xref ) or endogenous ( xref ) EZH2 with endogenous ZRANB1, SUZ12, and EED, suggesting that ZRANB1 may regulate EZH2 that is present in the PRC2."
ZRANB1 affects STRN4
3 |
3 |

No evidence text available

No evidence text available

No evidence text available
ZRANB1 affects STRN
3 |
3 |

No evidence text available

No evidence text available

No evidence text available
ZRANB1 affects PIEZO1
| 3
| 3

reach
"The interaction of Usp1, Usp9, Trabid, Fih-1 and Mib and Mib2 were confirmed by immunoprecipitation."

reach
"Mib and Mib2 interact with deubiquitylases Usp1, Usp9 and Trabid."

reach
"Since both Mib and Mib2 can bind to Fih-1 and Trabid, we next asked whether Mib and Mib2 could promote the most C-terminal RF dependent substrate ubiquitylation."
ZRANB1 affects NZF1
| 3
ZRANB1 binds pol, gag, and NZF1. 2 / 2
| 2

sparser
"Although mutation of T25 to alanine does not affect TRABID-NZF1 binding to K29 or K33 chains ( xref F), the corresponding residue in TAB2 (E685) interacts with the proximal Ub and is important for binding K63 chains ( xref )."

sparser
"We have established a method to investigate K29 chains in cells that relies on TRABID-NZF1 binding to K29 and K33 chains and subsequent cleavage with a DUB that does not hydrolyze K29 linkages ( xref A)."
ZRANB1 binds NZF1. 1 / 1
| 1

sparser
"Interestingly, these short vOTU-resistant chains stayed bound to the Halo-TRABID NZF1 bead fraction, while the supernatant contained only monoUb ( xref D and xref B)."
ZRANB1 affects MAP1LC3
| 3
| 3

reach
"Remarkably, UBE3C depletion induced upregulation of VPS34 expression, LC3 puncta and LC3 lipidation in cells cultured in DMEM or EBSS were all reversed by TRABID knockdown."

reach
"Accordingly, LC3 lipidation was also enhanced by TRABID overexpression in DMEM- or EBSS cultured cells treated with bafilomycin A1."

reach
"Furthermore, in cells treated with bafilomycin A1 to block autophagic turnover, TRABID knockdown still reduced LC3 lipidation but did not alter p62 level, indicating a promoting role of TRABID in autophagosome formation."
ZRANB1 affects FAM83C-AS1
| 3
ZRANB1 binds FAM83C-AS1. 3 / 3
| 3

reach
"Based on molecular mechanism related assays, we concluded that FAM83C-AS1 binding to ZRANB1 promoted EZH2 deubiquitination and thereby inhibited EZH2 downregulation, which led to the enhanced protein stability of EZH2 in CRC tumor cells."

reach
"Our data thus demonstrate that FAM83C-AS1 binds to ZRANB1 and stabilizes EZH2 protein in CRCs."

reach
"Subsequent RIP assays further validated that FAM83C-AS1 bound to ZRANB1 in RKO and SW620 cells (XREF_FIG)."
TFAP4 affects ZRANB1
3 |
TFAP4 decreases the amount of ZRANB1. 3 / 3
3 |

No evidence text available

No evidence text available

No evidence text available
SUZ12 affects ZRANB1
| 1 2
| 1

sparser
"Interestingly, knockdown of EZH2 impaired but did not abolish the interaction of ZRANB1 with SUZ12, RBBP4, and EED ( xref ), indicating that EZH2 partially mediates the association of ZRANB1 with the PRC2."
| 1

reach
"Furthermore, we observed the interaction of ZRANB1 with endogenous EZH2 and SUZ12 (XREF_SUPPLEMENTARY) and, reciprocally, the interaction of either exogenous (XREF_SUPPLEMENTARY) or endogenous (XREF_FIG) EZH2 with endogenous ZRANB1, SUZ12, and EED, suggesting that ZRANB1 may regulate EZH2 that is present in the PRC2."
| 1

sparser
"Furthermore, we observed the interaction of ZRANB1 with endogenous EZH2 and SUZ12 ( xref ) and, reciprocally, the interaction of either exogenous ( xref ) or endogenous ( xref ) EZH2 with endogenous ZRANB1, SUZ12, and EED, suggesting that ZRANB1 may regulate EZH2 that is present in the PRC2."
STRN4 affects ZRANB1
3 |
3 |

No evidence text available

No evidence text available

No evidence text available
STRN affects ZRANB1
3 |
3 |

No evidence text available

No evidence text available

No evidence text available
NZF1 affects ZRANB1
| 3
ZRANB1 binds pol, gag, and NZF1. 2 / 2
| 2

sparser
"Although mutation of T25 to alanine does not affect TRABID-NZF1 binding to K29 or K33 chains ( xref F), the corresponding residue in TAB2 (E685) interacts with the proximal Ub and is important for binding K63 chains ( xref )."

sparser
"We have established a method to investigate K29 chains in cells that relies on TRABID-NZF1 binding to K29 and K33 chains and subsequent cleavage with a DUB that does not hydrolyze K29 linkages ( xref A)."
ZRANB1 binds NZF1. 1 / 1
| 1

sparser
"Interestingly, these short vOTU-resistant chains stayed bound to the Halo-TRABID NZF1 bead fraction, while the supernatant contained only monoUb ( xref D and xref B)."
DDB2 affects ZRANB1
| 1 2
| 2

sparser
"Immunoprecipitation assay showed that the interaction of TRABID and DDB2 is mediated by their OTU domain and N-terminal region, respectively."

sparser
"Thus, our data revealed a critical role of the TRABID-DDB2 axis in the proliferation of hepatocellular carcinoma cells."
ZRANB1 binds DDB2 and OTU domain. 1 / 1
| 1

reach
"Immunoprecipitation assay showed that the interaction of TRABID and DDB2 is mediated by their OTU domain and N-terminal region, respectively."
AKT affects ZRANB1
| 3
AKT phosphorylates ZRANB1. 3 / 3
| 3

sparser
"An AKT phosphorylation motif (R × × S/T) antibody further confirmed the phosphorylation of Trabid by AKT, while lambda phosphatase eliminated the reactivity of Trabid with this antibody (Fig.  xref )."

sparser
"Here, our observation that phosphorylation of Trabid by AKT is required for β-TrCP1-mediated Twist1 ubiquitination and degradation, maybe provide an explanation about how AKT inhibits EMT."

sparser
"Then we studied whether phosphorylation of Trabid by AKT was required for its DUB activity toward K63 ubiquitination of Twist1."
Succimer affects ZRANB1
2 |
Succimer decreases the amount of ZRANB1. 2 / 2
2 |

No evidence text available

No evidence text available
Pol affects NZF1
| 2
ZRANB1 binds pol, gag, and NZF1. 2 / 2
| 2

sparser
"Although mutation of T25 to alanine does not affect TRABID-NZF1 binding to K29 or K33 chains ( xref F), the corresponding residue in TAB2 (E685) interacts with the proximal Ub and is important for binding K63 chains ( xref )."

sparser
"We have established a method to investigate K29 chains in cells that relies on TRABID-NZF1 binding to K29 and K33 chains and subsequent cleavage with a DUB that does not hydrolyze K29 linkages ( xref A)."
Magnetite nanoparticle decreases the amount of ZRANB1. 2 / 2
2 |

No evidence text available

No evidence text available
2 |
Hsa-miR-933 decreases the amount of ZRANB1. 2 / 2
2 |

No evidence text available

No evidence text available
2 |
Hsa-miR-892a decreases the amount of ZRANB1. 2 / 2
2 |

No evidence text available

No evidence text available
2 |
Hsa-miR-6867-5p decreases the amount of ZRANB1. 2 / 2
2 |

No evidence text available

No evidence text available
2 |
Hsa-miR-574-5p decreases the amount of ZRANB1. 2 / 2
2 |

No evidence text available

No evidence text available
2 |
Hsa-miR-548x-3p decreases the amount of ZRANB1. 2 / 2
2 |

No evidence text available

No evidence text available
2 |
Hsa-miR-548j-3p decreases the amount of ZRANB1. 2 / 2
2 |

No evidence text available

No evidence text available
2 |
Hsa-miR-548g-3p decreases the amount of ZRANB1. 2 / 2
2 |

No evidence text available

No evidence text available
2 |
Hsa-miR-548f-3p decreases the amount of ZRANB1. 2 / 2
2 |

No evidence text available

No evidence text available
2 |
Hsa-miR-548e-3p decreases the amount of ZRANB1. 2 / 2
2 |

No evidence text available

No evidence text available
2 |
Hsa-miR-548az-3p decreases the amount of ZRANB1. 2 / 2
2 |

No evidence text available

No evidence text available
2 |
Hsa-miR-548ar-3p decreases the amount of ZRANB1. 2 / 2
2 |

No evidence text available

No evidence text available
2 |
Hsa-miR-548aq-3p decreases the amount of ZRANB1. 2 / 2
2 |

No evidence text available

No evidence text available
2 |
Hsa-miR-548am-3p decreases the amount of ZRANB1. 2 / 2
2 |

No evidence text available

No evidence text available
2 |
Hsa-miR-548aj-3p decreases the amount of ZRANB1. 2 / 2
2 |

No evidence text available

No evidence text available
2 |
Hsa-miR-548ah-3p decreases the amount of ZRANB1. 2 / 2
2 |

No evidence text available

No evidence text available
2 |
Hsa-miR-548ae-3p decreases the amount of ZRANB1. 2 / 2
2 |

No evidence text available

No evidence text available
2 |
Hsa-miR-548a-3p decreases the amount of ZRANB1. 2 / 2
2 |

No evidence text available

No evidence text available
Gag affects NZF1
| 2
ZRANB1 binds pol, gag, and NZF1. 2 / 2
| 2

sparser
"Although mutation of T25 to alanine does not affect TRABID-NZF1 binding to K29 or K33 chains ( xref F), the corresponding residue in TAB2 (E685) interacts with the proximal Ub and is important for binding K63 chains ( xref )."

sparser
"We have established a method to investigate K29 chains in cells that relies on TRABID-NZF1 binding to K29 and K33 chains and subsequent cleavage with a DUB that does not hydrolyze K29 linkages ( xref A)."

reach
"Conditional deletion of Zranb1 in dendritic cells impairs IL-12 and IL-23 production and the generation of T 1 and T 17 subsets of inflammatory T cells, rendering mice refractory to the induction of experimental autoimmune encephalomyelitis (EAE) ."

reach
"Conditional deletion of Zranb1 in dendritic cells impairs IL-12 and IL-23 production and the generation of T H 1 and T H 17 subsets of inflammatory T cells, rendering mice refractory to the induction of experimental autoimmune encephalomyelitis (EAE) 191 ."
| 2

reach
"Genetic or pharmacological inhibition of TRABID promotes anti-tumor immune surveillance and sensitizes tumors to anti-PD-1 therapy in preclinical cancer models in male mice."

reach
"TRABID inhibition activates cGAS/STING-mediated anti-tumor immunity through mitosis and autophagy dysregulation."
| 1 1
ZRANB1 inhibits cell growth.
| 1
| 1

sparser
"The observation that the TRABID inhibitors were able to inhibit cell growth suggests that TRABID may have a role in cell growth regulation."
ZRANB1 activates cell growth.
| 1
| 1

reach
"Nevertheless, inhibition of TRABID may inhibit cell growth."
ZRANB1 affects USP39
| 1 1
| 1 1

reach
"For example, the interaction between ZRANB2 and USP39, annotated by IntAct and BioGRID, is not correct because the cited article shows instead the interaction between ZRANB1 and USP39."

sparser
"For example, the interaction between ZRANB2 and USP39, annotated by IntAct and BioGRID, is not correct because the cited article ( xref ) shows instead the interaction between ZRANB1 and USP39."
ZRANB1 affects TUMOR-SUPPRESSOR-PROTEIN
| 2
ZRANB1 deubiquitinates TUMOR-SUPPRESSOR-PROTEIN.
| 1
ZRANB1 deubiquitinates TUMOR-SUPPRESSOR-PROTEIN. 1 / 1
| 1

trips
"We further show that Trabid can bind to and deubiquitylate the APC tumor suppressor protein, a negative regulator of Wnt-mediated transcription."
ZRANB1 binds TUMOR-SUPPRESSOR-PROTEIN.
| 1
ZRANB1 binds TUMOR-SUPPRESSOR-PROTEIN. 1 / 1
| 1

trips
"We further show that Trabid can bind to and deubiquitylate the APC tumor suppressor protein, a negative regulator of Wnt-mediated transcription."
ZRANB1 affects TRAF
| 2
| 2

reach
"Structural and biochemical analysis suggests a novel architecture of the catalytic triad, which might be present in a subset of OTU domains including Cezanne and TRABID (TRAF binding domain)."

reach
"We report two novel genes, Cezanne (cellular zinc finger anti-NF-kappa B) and TRABID (TRAF binding domain), with sequence similarity to A20."
ZRANB1 affects TAB2
| 2
| 1

sparser
"For example, NZF domains of TAB2 (TAK1 binding protein 2) or TRABID (TRAF binding domain) preferentially bind to Lys63- over Lys48-linked ubiquitin chains xref ."

sparser
"Whereas the NZF motif of TAB2, TAB3 and ZRANB1 binds ubiquitin though a conserved TY/F motif (T674, F675 in TAB2), the NZF motif of RANBP2 does not associate with ubiquitin, due to the divergence of the TY/F motif to LV (L1489, V1490) ( xref , blue box) ( xref )."
ZRANB1 affects STRN3
2 |
2 |

No evidence text available

No evidence text available
ZRANB1 affects STRIP1
2 |
2 |

No evidence text available

No evidence text available
ZRANB1 affects SP1
| 1 1
| 1 1

sparser
"Mechanistically, ZRANB1 bound with SP1 directly and stabilized the SP1 protein by deubiquitinating it."

reach
"Mechanistically, ZRANB1 bound with SP1 directly and stabilized the SP1 protein by deubiquitinating it."
ZRANB1 affects SLMAP
2 |
2 |

No evidence text available

No evidence text available
ZRANB1 affects RUBCN
| 2
| 1

sparser
"However, no association of TRABID with Rubicon, which forms a VPS34 complex with autophagy-inhibitory function xref , could be detected (Supplementary Fig.  xref )."
| 1

sparser
"However, no association of TRABID with Rubicon, which forms a VPS34 complex with autophagy-inhibitory function xref , could be detected (Supplementary Fig.  xref )."
ZRANB1 affects PBLD
2 |
2 |

No evidence text available

No evidence text available
ZRANB1 affects OTU domain
| 2
ZRANB1 binds DDB2 and OTU domain. 1 / 1
| 1

reach
"Immunoprecipitation assay showed that the interaction of TRABID and DDB2 is mediated by their OTU domain and N-terminal region, respectively."
ZRANB1 binds NSC267309 and OTU domain. 1 / 1
| 1

reach
"The molecular modeling of the bindings of NSC112200, NSC267309 and NSC60650 to TRABID OTU domain suggests that while all three compounds can form electrostatic interactions with the side chain of E522 and the backbone NH of T556, both NSC112200 and NSC267309 can form an additional hydrogen bond with the side chain of S491."
ZRANB1 affects MITF
| 1 1
ZRANB1 ubiquitinates MITF.
| 1
ZRANB1 leads to the ubiquitination of MITF. 1 / 1
| 1

reach
"However, the deubiquitinase ZRANB1 rescued MITF ubiquitination and degradation."
ZRANB1 binds MITF.
| 1
| 1

sparser
"Significantly, WT‐CLK4 disrupted the interaction between ZRANB1 and MITF (Figure  xref )."
ZRANB1 affects MAP3K7
| 2
ZRANB1 deubiquitinates MAP3K7.
| 1
ZRANB1 leads to the deubiquitination of MAP3K7. 1 / 1
| 1

reach
"Trabid has also been shown to interact with and inhibits K63 ubiquitination of Drosophila TAK1, reducing the expression of downstream genes encoding antimicrobial peptides in flies 42."
ZRANB1 binds MAP3K7.
| 1
| 1

reach
"The deubiquitinase Trabid interacted with TAK1, reducing immune signalling output and K63 linked ubiquitination."
ZRANB1 affects LOXL2
| 1 1
ZRANB1 increases the amount of LOXL2.
| 1
ZRANB1 increases the amount of LOXL2. 1 / 1
| 1

reach
"We also demonstrated that ZRANB1 knockdown downregulated the expression of LOXL2 and suppressed HCC growth and metastasis in vitro and in vivo ."
ZRANB1 activates LOXL2.
| 1
ZRANB1 activates LOXL2. 1 / 1
| 1

eidos
"We also demonstrated that ZRANB1 knockdown downregulated the expression of LOXL2 and suppressed HCC growth and metastasis in vitro and in vivo ."
ZRANB1 affects K33
| 2
ZRANB1 binds K29- and K33. 2 / 2
| 2

reach
"We found that the TRABID N terminus, which contains three Npl4-type zinc finger (NZF) UBDs, specifically binds K29- and K33 linked diUb, and specificity can be attributed to the first NZF domain (NZF1)."

reach
"TRABID NZF1 Specifically Binds K29- and K33 Linked Chains."
ZRANB1 affects Il23
| 2
ZRANB1 inhibits Il23.
| 1
ZRANB1 inhibits Il23. 1 / 1
| 1

reach
"By employing a gene targeting approach, we show that Trabid deficiency in DCs and macrophages impaired the induction of Il12 and Il23 genes without affecting the induction of many other cytokine genes."
ZRANB1 increases the amount of Il23.
| 1
ZRANB1 increases the amount of Il23. 1 / 1
| 1

reach
"Deletion of Zranb1 (which encodes Trabid) in dendritic cells inhibited induction of the expression of Il12 and Il23 by Toll like receptors (TLRs), which impaired the differentiation of inflammatory T cells and protected mice from autoimmune inflammation."
ZRANB1 affects IL12B
| 2
ZRANB1-C443A activates IL12B. 2 / 2
| 2

reach
"In similar experiments using BMDCs, reconstitution of DC-cKO BMDCs with wild-type Trabid, but not C443A Trabid, rescued the induction of Il12a, Il12b, and Il23a genes (XREF_FIG)."

reach
"Consistently, reconstitution of KO MEFs with wild-type Trabid, but not C443A Trabid, greatly promoted poly (I : C)-induced Il12b, Il12a and Il23a mRNA expression in these cells (XREF_FIG) but had no effect on the induction of the control gene Il6 (XREF_FIG)."
ZRANB1 affects FAM83C
| 2
| 2

sparser
"Our data thus demonstrate that FAM83C-AS1 binds to ZRANB1 and stabilizes EZH2 protein in CRCs."

sparser
"Subsequent RIP assays further validated that FAM83C-AS1 bound to ZRANB1 in RKO and SW620 cells ( xref )."
ZRANB1 affects Circulin-C
| 2

sparser
"The expression of circ-ZRANB1 was significantly upregulated in the aqueous humor of a rat model of glaucoma."

sparser
"Circ-ZRANB1 is mainly derived from Müller cells, which can bind to miR-271 to regulate the expression of RUNX2."

reach
"Functionally, we showed that TRABID-mediated hepatocellular carcinoma cell proliferation is attenuated by DDB2 knockdown."

reach
"TRABID targets DDB2 for deubiquitination to promote proliferation of hepatocellular carcinoma cells."
| 1 1
| 1 1

eidos
"The upregulation of ZRANB1 promoted tumorigenesis in vivo ."

reach
"The upregulation of ZRANB1 promoted tumorigenesis in vivo."
ZRANB1 affects CTTNBP2NL
2 |

No evidence text available

No evidence text available
ZRANB1 affects CTTNBP2
2 |

No evidence text available

No evidence text available
ZRANB1 affects AS1
| 2
| 2

sparser
"Our data thus demonstrate that FAM83C-AS1 binds to ZRANB1 and stabilizes EZH2 protein in CRCs."

sparser
"Subsequent RIP assays further validated that FAM83C-AS1 bound to ZRANB1 in RKO and SW620 cells ( xref )."
ZRANB1 affects APC tumor suppressor protein
| 2
ZRANB1 deubiquitinates APC tumor suppressor protein.
| 1
ZRANB1 deubiquitinates APC tumor suppressor protein. 1 / 1
| 1

reach
"We further show that Trabid can bind to and deubiquitylate the APC tumor suppressor protein, a negative regulator of Wnt mediated transcription."
ZRANB1 binds APC tumor suppressor protein.
| 1
ZRANB1 binds APC tumor suppressor protein. 1 / 1
| 1

reach
"We further show that Trabid can bind to and deubiquitylate the APC tumor suppressor protein, a negative regulator of Wnt mediated transcription."
UVRAG affects ZRANB1
| 1 1
| 1

sparser
"Immunoprecipitation analysis revealed the association of TRABID with both ATG14 and UVRAG, along with the common subunits of VPS34 complex, in cells cultured in DMEM or EBSS (Supplementary Fig.  xref )."
| 1

reach
"Furthermore, GFP-ATG14 and GFP-UVRAG interacted with endogenous TRABID in transfected cells and these associations were not affected by starvation."
USP9X affects MIB2
| 2
| 1

sparser
"Mib and Mib2 interact with deubiquitylases Usp1, Usp9 and Trabid."
| 1

sparser
"Usp1, Usp9, Trabid and Fih-1 also bound to zebrafish Mib2, a Mib homolog with similar structural domains and functions."
USP9X affects HIF1AN
| 2
| 1

sparser
"The interaction of Usp1, Usp9, Trabid, Fih-1 and Mib/Mib2 were confirmed by immunoprecipitation."
| 1

sparser
"Usp1, Usp9, Trabid and Fih-1 also bound to zebrafish Mib2, a Mib homolog with similar structural domains and functions."
USP39 affects ZRANB1
| 1 1
| 1 1

reach
"For example, the interaction between ZRANB2 and USP39, annotated by IntAct and BioGRID, is not correct because the cited article shows instead the interaction between ZRANB1 and USP39."

sparser
"For example, the interaction between ZRANB2 and USP39, annotated by IntAct and BioGRID, is not correct because the cited article ( xref ) shows instead the interaction between ZRANB1 and USP39."
USP1 affects MIB2
| 2
| 1

sparser
"Mib and Mib2 interact with deubiquitylases Usp1, Usp9 and Trabid."
| 1

sparser
"Usp1, Usp9, Trabid and Fih-1 also bound to zebrafish Mib2, a Mib homolog with similar structural domains and functions."
USP1 affects HIF1AN
| 2
| 1

sparser
"The interaction of Usp1, Usp9, Trabid, Fih-1 and Mib/Mib2 were confirmed by immunoprecipitation."
| 1

sparser
"Usp1, Usp9, Trabid and Fih-1 also bound to zebrafish Mib2, a Mib homolog with similar structural domains and functions."
TRAF affects ZRANB1
| 2
| 2

reach
"Structural and biochemical analysis suggests a novel architecture of the catalytic triad, which might be present in a subset of OTU domains including Cezanne and TRABID (TRAF binding domain)."

reach
"We report two novel genes, Cezanne (cellular zinc finger anti-NF-kappa B) and TRABID (TRAF binding domain), with sequence similarity to A20."
TAB2 affects ZRANB1
| 2
| 1

sparser
"For example, NZF domains of TAB2 (TAK1 binding protein 2) or TRABID (TRAF binding domain) preferentially bind to Lys63- over Lys48-linked ubiquitin chains xref ."

sparser
"Whereas the NZF motif of TAB2, TAB3 and ZRANB1 binds ubiquitin though a conserved TY/F motif (T674, F675 in TAB2), the NZF motif of RANBP2 does not associate with ubiquitin, due to the divergence of the TY/F motif to LV (L1489, V1490) ( xref , blue box) ( xref )."
STRN3 affects ZRANB1
2 |
2 |

No evidence text available

No evidence text available
STRIP1 affects ZRANB1
2 |
2 |

No evidence text available

No evidence text available
SP1 affects ZRANB1
| 1 1
| 1 1

sparser
"Mechanistically, ZRANB1 bound with SP1 directly and stabilized the SP1 protein by deubiquitinating it."

reach
"Mechanistically, ZRANB1 bound with SP1 directly and stabilized the SP1 protein by deubiquitinating it."
SLMAP affects ZRANB1
2 |
2 |

No evidence text available

No evidence text available
SF1 affects ZRANB1
2 |
SF1 decreases the amount of ZRANB1. 2 / 2
2 |

No evidence text available

No evidence text available
S1 affects ZRANB1
| 2
S1 inhibits ZRANB1. 2 / 2
| 2

reach
"Table S1) inhibition of TRABID DUB activity."

reach
"Table S1, which share similar chemical structures to NSC112200 and NSC267309, did not inhibit TRABID DUB activity, suggesting that the two hydroxyl groups and their locations on the benzene ring may be important for the inhibitory activity."
RUBCN affects ZRANB1
| 2
| 1

sparser
"However, no association of TRABID with Rubicon, which forms a VPS34 complex with autophagy-inhibitory function xref , could be detected (Supplementary Fig.  xref )."
| 1

sparser
"However, no association of TRABID with Rubicon, which forms a VPS34 complex with autophagy-inhibitory function xref , could be detected (Supplementary Fig.  xref )."
PHF20 affects TAB2
| 2
| 1

sparser
"For example, NZF domains of TAB2 (TAK1 binding protein 2) or TRABID (TRAF binding domain) preferentially bind to Lys63- over Lys48-linked ubiquitin chains xref ."

sparser
"Whereas the NZF motif of TAB2, TAB3 and ZRANB1 binds ubiquitin though a conserved TY/F motif (T674, F675 in TAB2), the NZF motif of RANBP2 does not associate with ubiquitin, due to the divergence of the TY/F motif to LV (L1489, V1490) ( xref , blue box) ( xref )."
PBLD affects ZRANB1
2 |
2 |

No evidence text available

No evidence text available
OTU domain affects ZRANB1
| 2
ZRANB1 binds DDB2 and OTU domain. 1 / 1
| 1

reach
"Immunoprecipitation assay showed that the interaction of TRABID and DDB2 is mediated by their OTU domain and N-terminal region, respectively."
ZRANB1 binds NSC267309 and OTU domain. 1 / 1
| 1

reach
"The molecular modeling of the bindings of NSC112200, NSC267309 and NSC60650 to TRABID OTU domain suggests that while all three compounds can form electrostatic interactions with the side chain of E522 and the backbone NH of T556, both NSC112200 and NSC267309 can form an additional hydrogen bond with the side chain of S491."
NZF1 affects pol
| 2
ZRANB1 binds pol, gag, and NZF1. 2 / 2
| 2

sparser
"Although mutation of T25 to alanine does not affect TRABID-NZF1 binding to K29 or K33 chains ( xref F), the corresponding residue in TAB2 (E685) interacts with the proximal Ub and is important for binding K63 chains ( xref )."

sparser
"We have established a method to investigate K29 chains in cells that relies on TRABID-NZF1 binding to K29 and K33 chains and subsequent cleavage with a DUB that does not hydrolyze K29 linkages ( xref A)."
NSC112200 affects ZRANB1
| 2
NSC112200 inhibits ZRANB1. 2 / 2
| 2

reach
"We also found that NSC112200 inhibited the deubiquitinase activity of ZRANB1, but not another OTU family member, A20 (XREF_SUPPLEMENTARY)."

reach
"In an in vitro deubiquitination assay using ubiquitin chains as substrates, we found that ZRANB1 cleaved K33 linked di-ubiquitin; this cleavage was blocked by NSC112200, but not by the control compound NSC60650 (1,5-dichloro-2,4-dihydroxybenzene) (XREF_FIG)."
MYOD1 affects ZRANB1
2 |
MYOD1 decreases the amount of ZRANB1. 2 / 2
2 |

No evidence text available

No evidence text available
MIB2 affects USP9X
| 2
| 1

sparser
"Mib and Mib2 interact with deubiquitylases Usp1, Usp9 and Trabid."
| 1

sparser
"Usp1, Usp9, Trabid and Fih-1 also bound to zebrafish Mib2, a Mib homolog with similar structural domains and functions."
MIB2 affects HIF1AN
| 2
| 1

sparser
"Since both Mib and Mib2 can bind to Fih-1 and Trabid, we next asked whether Mib and Mib2 could promote the most C-terminal RF-dependent substrate ubiquitylation."
| 1

sparser
"Usp1, Usp9, Trabid and Fih-1 also bound to zebrafish Mib2, a Mib homolog with similar structural domains and functions."
K33 affects ZRANB1
| 2
ZRANB1 binds K29- and K33. 2 / 2
| 2

reach
"We found that the TRABID N terminus, which contains three Npl4-type zinc finger (NZF) UBDs, specifically binds K29- and K33 linked diUb, and specificity can be attributed to the first NZF domain (NZF1)."

reach
"TRABID NZF1 Specifically Binds K29- and K33 Linked Chains."
HIF1AN affects USP9X
| 2
| 1

sparser
"The interaction of Usp1, Usp9, Trabid, Fih-1 and Mib/Mib2 were confirmed by immunoprecipitation."
| 1

sparser
"Usp1, Usp9, Trabid and Fih-1 also bound to zebrafish Mib2, a Mib homolog with similar structural domains and functions."
HIF1AN affects MIB2
| 2
| 1

sparser
"Since both Mib and Mib2 can bind to Fih-1 and Trabid, we next asked whether Mib and Mib2 could promote the most C-terminal RF-dependent substrate ubiquitylation."
| 1

sparser
"Usp1, Usp9, Trabid and Fih-1 also bound to zebrafish Mib2, a Mib homolog with similar structural domains and functions."
FAM83C affects ZRANB1
| 2
| 2

sparser
"Our data thus demonstrate that FAM83C-AS1 binds to ZRANB1 and stabilizes EZH2 protein in CRCs."

sparser
"Subsequent RIP assays further validated that FAM83C-AS1 bound to ZRANB1 in RKO and SW620 cells ( xref )."
ESRRA affects ZRANB1
2 |
ESRRA decreases the amount of ZRANB1. 2 / 2
2 |

No evidence text available

No evidence text available
Circulin-C affects ZRANB1
| 2

sparser
"The expression of circ-ZRANB1 was significantly upregulated in the aqueous humor of a rat model of glaucoma."

sparser
"Circ-ZRANB1 is mainly derived from Müller cells, which can bind to miR-271 to regulate the expression of RUNX2."
CTTNBP2NL affects ZRANB1
2 |

No evidence text available

No evidence text available
CTTNBP2 affects ZRANB1
2 |

No evidence text available

No evidence text available
ATG14 affects ZRANB1
| 1 1
| 1

sparser
"Immunoprecipitation analysis revealed the association of TRABID with both ATG14 and UVRAG, along with the common subunits of VPS34 complex, in cells cultured in DMEM or EBSS (Supplementary Fig.  xref )."
| 1

reach
"Furthermore, GFP-ATG14 and GFP-UVRAG interacted with endogenous TRABID in transfected cells and these associations were not affected by starvation."
AS1 affects ZRANB1
| 2
| 2

sparser
"Our data thus demonstrate that FAM83C-AS1 binds to ZRANB1 and stabilizes EZH2 protein in CRCs."

sparser
"Subsequent RIP assays further validated that FAM83C-AS1 bound to ZRANB1 in RKO and SW620 cells ( xref )."
AKT1 affects ZRANB1
2 |
AKT1 phosphorylates ZRANB1 on S78. 1 / 1
1 |

No evidence text available
AKT1 phosphorylates ZRANB1 on T117. 1 / 1
1 |

No evidence text available
Urethane affects ZRANB1
1 |
Urethane increases the amount of ZRANB1. 1 / 1
1 |

No evidence text available
1 |
Troglitazone decreases the amount of ZRANB1. 1 / 1
1 |

No evidence text available
1 |
Titanium dioxide increases the amount of ZRANB1. 1 / 1
1 |

No evidence text available
Sunitinib affects ZRANB1
1 |
Sunitinib increases the amount of ZRANB1. 1 / 1
1 |

No evidence text available
1 |
Sodium arsenate increases the amount of ZRANB1. 1 / 1
1 |

No evidence text available
1 |
Progesterone increases the amount of ZRANB1. 1 / 1
1 |

No evidence text available
Polyubiquitin affects ZRANB1
| 1
ZRANB1 binds polyubiquitin. 1 / 1
| 1

sparser
"TRABID preferentially binds to lysine 63-linked polyubiquitin chains (K63 chains), but not K48-linked polyubiquitin chains (K48 chains), and specifically cleaves K63 chains [ xref ]."
1 |
Pirinixic acid increases the amount of ZRANB1. 1 / 1
1 |

No evidence text available
Pentanal affects ZRANB1
1 |
Pentanal decreases the amount of ZRANB1. 1 / 1
1 |

No evidence text available
Oleic acid affects ZRANB1
| 1
| 1

reach
"HFD also decreased the expression of Trabid mRNA and TRABID downregulation was further detected in mouse hepatocyte cell line AML12 treated with oleic acid, but not tunicamycin."
Methylmercury chloride decreases the amount of ZRANB1. 1 / 1
1 |

No evidence text available
1 |
Hsa-miR-93-5p decreases the amount of ZRANB1. 1 / 1
1 |

No evidence text available
1 |
Hsa-miR-875-5p decreases the amount of ZRANB1. 1 / 1
1 |

No evidence text available
1 |
Hsa-miR-770-5p decreases the amount of ZRANB1. 1 / 1
1 |

No evidence text available
1 |
Hsa-miR-6859-3p decreases the amount of ZRANB1. 1 / 1
1 |

No evidence text available
1 |
Hsa-miR-6846-3p decreases the amount of ZRANB1. 1 / 1
1 |

No evidence text available
1 |
Hsa-miR-6083 decreases the amount of ZRANB1. 1 / 1
1 |

No evidence text available
1 |
Hsa-miR-5591-3p decreases the amount of ZRANB1. 1 / 1
1 |

No evidence text available
1 |
Hsa-miR-519d-3p decreases the amount of ZRANB1. 1 / 1
1 |

No evidence text available
1 |
Hsa-miR-513c-3p decreases the amount of ZRANB1. 1 / 1
1 |

No evidence text available
1 |
Hsa-miR-513a-3p decreases the amount of ZRANB1. 1 / 1
1 |

No evidence text available
1 |
Hsa-miR-5011-5p decreases the amount of ZRANB1. 1 / 1
1 |

No evidence text available
1 |
Hsa-miR-4783-5p decreases the amount of ZRANB1. 1 / 1
1 |

No evidence text available
1 |
Hsa-miR-4482-5p decreases the amount of ZRANB1. 1 / 1
1 |

No evidence text available
1 |
Hsa-miR-410-3p decreases the amount of ZRANB1. 1 / 1
1 |

No evidence text available
1 |
Hsa-miR-3606-3p decreases the amount of ZRANB1. 1 / 1
1 |

No evidence text available
1 |
Hsa-miR-3144-3p decreases the amount of ZRANB1. 1 / 1
1 |

No evidence text available
1 |
Hsa-miR-3130-5p decreases the amount of ZRANB1. 1 / 1
1 |

No evidence text available
1 |
Hsa-miR-2681-5p decreases the amount of ZRANB1. 1 / 1
1 |

No evidence text available
1 |
Hsa-miR-21-5p decreases the amount of ZRANB1. 1 / 1
1 |

No evidence text available
1 |
Hsa-miR-20b-5p decreases the amount of ZRANB1. 1 / 1
1 |

No evidence text available
1 |
Hsa-miR-20a-5p decreases the amount of ZRANB1. 1 / 1
1 |

No evidence text available
1 |
Hsa-miR-1912 decreases the amount of ZRANB1. 1 / 1
1 |

No evidence text available
1 |
Hsa-miR-190a-3p decreases the amount of ZRANB1. 1 / 1
1 |

No evidence text available
1 |
Hsa-miR-17-5p decreases the amount of ZRANB1. 1 / 1
1 |

No evidence text available
1 |
Hsa-miR-16-5p decreases the amount of ZRANB1. 1 / 1
1 |

No evidence text available
1 |
Hsa-miR-16-1-3p decreases the amount of ZRANB1. 1 / 1
1 |

No evidence text available
1 |
Hsa-miR-136-3p decreases the amount of ZRANB1. 1 / 1
1 |

No evidence text available
1 |
Hsa-miR-1295b-5p decreases the amount of ZRANB1. 1 / 1
1 |

No evidence text available
1 |
Hsa-miR-1277-5p decreases the amount of ZRANB1. 1 / 1
1 |

No evidence text available
1 |
Hsa-miR-106b-5p decreases the amount of ZRANB1. 1 / 1
1 |

No evidence text available
1 |
Hsa-miR-103a-3p decreases the amount of ZRANB1. 1 / 1
1 |

No evidence text available
Gag affects UBD
| 1
ZRANB1 binds UBD and gag. 1 / 1
| 1

sparser
"We found that the TRABID N terminus, which contains three Npl4-type zinc finger (NZF) UBDs, specifically binds K29- and K33-linked diUb, and specificity can be attributed to the first NZF domain (NZF1)."
1 |
Formaldehyde decreases the amount of ZRANB1. 1 / 1
1 |

No evidence text available
1 |
Fluoranthene increases the amount of ZRANB1. 1 / 1
1 |

No evidence text available
Diarsenic trioxide increases the amount of ZRANB1. 1 / 1
1 |

No evidence text available
DIKKγ affects ZRANB1
| 1
ZRANB1 binds dIKKγ. 1 / 1
| 1

reach
"Trabid and Cylindromatosis (CYLD) deubiquitinases bind to dTAK1 and dIKKγ (key) , respectively and modulate K63-linked polyubiquitination of their respective target."
1 |
Cyclosporin A decreases the amount of ZRANB1. 1 / 1
1 |

No evidence text available
Copper(II) sulfate increases the amount of ZRANB1. 1 / 1
1 |

No evidence text available
1 |
Carbon nanotube decreases the amount of ZRANB1. 1 / 1
1 |

No evidence text available
Cadmium dichloride increases the amount of ZRANB1. 1 / 1
1 |

No evidence text available
Butanal affects ZRANB1
1 |
Butanal decreases the amount of ZRANB1. 1 / 1
1 |

No evidence text available
1 |
Bisphenol A demethylates ZRANB1. 1 / 1
1 |

No evidence text available
| 1

reach
"Accordingly, LC3 lipidation was also enhanced by TRABID overexpression in DMEM- or EBSS cultured cells treated with bafilomycin A1."
All-trans-retinoic acid increases the amount of ZRANB1. 1 / 1
1 |

No evidence text available
1 |
Aflatoxin B1 increases the amount of ZRANB1. 1 / 1
1 |

No evidence text available

reach
"Knockdown of TRABID with RNAi resulted in downregulated expression of canonical Wnt target genes and decreased Wnt transcription activity, whereas its knockdown does not affect TNF-2 pathway [XREF_BIBR]."
ZRANB1 affects stem-cell-like features
| 1
ZRANB1 activates stem-cell-like features. 1 / 1
| 1

eidos
"ZRANB1 enhances stem-cell-like features and accelerates tumor progression by regulating Sox9-mediated USP22 / Wnt / beta-catenin pathway in colorectal cancer ."
ZRANB1 affects stem-cell-like features cells
| 1
ZRANB1 activates stem-cell-like features cells. 1 / 1
| 1

eidos
"Moreover , ZRANB1 enhances stem-cell-like features of CRC cells and activated the Wnt / beta-catenin pathway through USP22 ."
ZRANB1 affects stability Sox9 cells
| 1
ZRANB1 activates stability Sox9 cells. 1 / 1
| 1

eidos
"ZRANB1 increased the stability of Sox9 in CRC cells by decelerating its ubiquitination ."
ZRANB1 affects span
| 1
ZRANB1 activates span. 1 / 1
| 1

reach
"Loss of Trabid, a new negative regulator of the drosophila immune-deficiency pathway at the level of TAK1, reduces life span."
ZRANB1 affects recruitment p62 K33-associated protein aggregates
| 1
ZRANB1 inhibits recruitment p62 K33-associated protein aggregates. 1 / 1
| 1

eidos
"Knockdown of ZRANB1 enhances the recruitment of p62 to K33-associated protein aggregates , suggesting that ZRANB1 is a negative regulator of aggrephagy ; yet , the physiological function of K33-linked ubiquitin chains and the role of ZRANB1 are not entirely understood [ 94 ] ."
ZRANB1 affects polyubiquitin
| 1
ZRANB1 binds polyubiquitin. 1 / 1
| 1

sparser
"TRABID preferentially binds to lysine 63-linked polyubiquitin chains (K63 chains), but not K48-linked polyubiquitin chains (K48 chains), and specifically cleaves K63 chains [ xref ]."
ZRANB1 affects isopeptidase
| 1
ZRANB1 activates isopeptidase. 1 / 1
| 1

reach
"However, as TRABID has been shown to mediate efficient isopeptidase activity toward Ub polymers, it would appear that it has the potential to confer dual chemical substrate specificity within cells."
ZRANB1 affects interleukin-12
| 1
ZRANB1 decreases the amount of interleukin-12. 1 / 1
| 1

reach
"Additionally, recent work has shown that the cellular DUB, Trabid, negatively regulates expression of interleukin-12 (IL-12) and IL-23 via the modification of ubiquitinated histones."

reach
"TRABID promotes experimental autoimmune encephalitis (EAE) by stabilizing JMJD2D at the Il12 promoter, enhancing IL-12 production and immunopathology (91)."
ZRANB1 affects growth
| 1
ZRANB1 inhibits growth. 1 / 1
| 1

sparser
"Collectively, these functional studies demonstrate that Trabid inhibits HCC growth."
ZRANB1 affects gag, and pol
| 1
ZRANB1 binds pol and gag. 1 / 1
| 1

sparser
"Indeed, mutation of T14, Y15, or M26 to alanine is sufficient to disrupt the binding of TRABID NZF1 to K29 and K33 chains ( xref E)."
ZRANB1 affects development novel therapies efficacy
| 1
ZRANB1 activates development novel therapies efficacy. 1 / 1
| 1

eidos
"Our results highlighted the role of ZRANB1 as a molecular target for CRC treatment , which may contribute to the development of novel therapies with better efficacy ."
ZRANB1 affects depends active site
| 1
ZRANB1 activates depends active site. 1 / 1
| 1

eidos
"Furthermore , TRABID deubiquitinates DDB2 , and this deubiquitination effect of TRABID depends on its active site ."
ZRANB1 affects dIKKγ
| 1
ZRANB1 binds dIKKγ. 1 / 1
| 1

reach
"Trabid and Cylindromatosis (CYLD) deubiquitinases bind to dTAK1 and dIKKγ (key) , respectively and modulate K63-linked polyubiquitination of their respective target."
ZRANB1 affects cleavage
| 1
ZRANB1 inhibits cleavage. 1 / 1
| 1

eidos
"Moreover , some candidate compounds of TRABID inhibitor have demonstrated their ability in inhibiting the cleavage of hexa-K63 ubiquitin by TRABID [ 29 ] ."
ZRANB1 affects cancer development
| 1
ZRANB1 activates cancer development. 1 / 1
| 1

eidos
"Taken together , these reports suggest that ZRANB1 , USP7 , USP1 and USP36 can promote cancer development via the stabilization of EZH2 by deubiquitination ."
ZRANB1 affects autophagy
| 1
| 1

reach
"Future study will be aimed to determine the mechanism of TRABID downregulation in NAFLD and the impact of TRABID stimulated autophagy activity on HCC suppression."
ZRANB1 affects autophagosome maturation VPS34
| 1
ZRANB1 activates autophagosome maturation VPS34. 1 / 1
| 1

eidos
"TRABID promotes autophagosome maturation VPS34 is present in different complexes ."
ZRANB1 affects autophagosome biogenesis
| 1
ZRANB1 activates autophagosome biogenesis. 1 / 1
| 1

eidos
"TRABID promotes autophagosome biogenesis ."
ZRANB1 affects autophagosome LC3 lipidation cells cultured modified medium
| 1
ZRANB1 activates autophagosome LC3 lipidation cells cultured modified medium. 1 / 1
| 1

eidos
"Validation experiment showed that TRABID knockdown reduced autophagosome numbers and LC3 lipidation in cells cultured in Dulbecco 's modified Eagle 's medium ( DMEM ; for measuring basal autophagy activity ) or Earle 's Balanced Salt Solution ( EBSS ) ( for measuring starvation-induced autophagy activity ) ( Fig. 1a , b ) ."
ZRANB1 affects activity
| 1
ZRANB1 inhibits activity. 1 / 1
| 1

sparser
"TRABID binds APC but rather then antagonizing the proteasomal turnover of APC TRABID inhibits APC activity through preferential deubiquitination of K63 linked ubiquitin chains."
ZRANB1 affects accumulation autophagic cargo p62
| 1
ZRANB1 inhibits accumulation autophagic cargo p62. 1 / 1
| 1

eidos
"TRABID knockdown also caused the accumulation of autophagic cargo p62 in both conditions ( Fig. 1b ) ."
ZRANB1 affects ZRANB1
| 1
| 1

reach
"Importantly, re-expression of ZRANB1 rescued the inhibitory effect of ZRANB1 siRNA (XREF_SUPPLEMENTARY) and ZRANB1 gRNA (XREF_FIG) on EZH2 protein level and cell proliferation."
ZRANB1 affects ZNF414
1 |
1 |

No evidence text available
ZRANB1 affects ZFYVE1
| 1
ZRANB1 activates ZFYVE1. 1 / 1
| 1

reach
"However, TRABID knockdown diminished DFCP1 puncta, ATG16 puncta, and ATG14 puncta."
ZRANB1 affects Wnt5a/β-Catenin
| 1
ZRANB1 activates Wnt5a/β-Catenin. 1 / 1
| 1

reach
"Downregulated circular RNA zRANB1 mediates Wnt5a/β-Catenin Signaling to promote neuropathic pain via miR-24-3p/LPAR3 axis in CCI rat models."
ZRANB1 affects Wnt5a beta-Catenin Signaling
| 1
ZRANB1 inhibits Wnt5a beta-Catenin Signaling. 1 / 1
| 1

eidos
"Downregulated circular RNA zRANB1 mediates Wnt5a / beta-Catenin Signaling to promote neuropathic pain via miR-24-3p / LPAR3 axis in CCI rat models ."
ZRANB1 affects Wnt/β-catenin
| 1
ZRANB1 activates Wnt/β-catenin. 1 / 1
| 1

reach
"Moreover, ZRANB1 enhances stem-cell-like features of CRC cells and activated the Wnt/β-catenin pathway through USP22."
ZRANB1 affects Wnt-induced transcription
| 1
ZRANB1 activates Wnt-induced transcription. 1 / 1
| 1

eidos
"Cezanne has a negative effect on NF-kappaB activation , whereas TRABID activates Wnt-induced transcription [ 32 ] ."
| PMC
ZRANB1 affects Wnt beta-catenin pathway
| 1
ZRANB1 activates Wnt beta-catenin pathway. 1 / 1
| 1

eidos
"Moreover , ZRANB1 enhances stem-cell-like features of CRC cells and activated the Wnt / beta-catenin pathway through USP22 ."
ZRANB1 affects WIPI1
| 1
| 1

sparser
"Inactive TRABID forms puncta enriched in atypical polyUb."
ZRANB1 affects VPS34 protein abundance
| 1
ZRANB1 activates VPS34 protein abundance. 1 / 1
| 1

eidos
"TRABID knockdown decreased VPS34 protein abundance and half-life , whereas TRABID overexpression enhanced VPS34 expression and stability ( Fig. 2i-l ) ."
ZRANB1 affects VPS34 K29
| 1
ZRANB1 inhibits VPS34 K29. 1 / 1
| 1

eidos
"TRABID reduces VPS34 K29 / K48 ubiquitination to stabilize VPS34 Next , we defined the functional position of TRABID in the autophagosome biogenesis process ."
ZRANB1 affects UBI4
| 1
| 1

sparser
"We focused on the NZF1 of TRABID, which binds to K29 and K33 polyUb and pulls down small amounts of M1 and K63 chains ( xref D)."
ZRANB1 affects UBE3C depletion-induced VPS34
| 1
ZRANB1 activates UBE3C depletion-induced VPS34. 1 / 1
| 1

eidos
"Remarkably , UBE3C depletion-induced upregulation of VPS34 expression , LC3 puncta and LC3 lipidation in cells cultured in DMEM or EBSS were all reversed by TRABID knockdown ( Fig. 4e-g ) ."
ZRANB1 affects UBE2S
1 |
1 |

No evidence text available
ZRANB1 affects UBD
| 1
ZRANB1 binds UBD and gag. 1 / 1
| 1

sparser
"We found that the TRABID N terminus, which contains three Npl4-type zinc finger (NZF) UBDs, specifically binds K29- and K33-linked diUb, and specificity can be attributed to the first NZF domain (NZF1)."
ZRANB1 affects Th17
| 1
ZRANB1 activates Th17. 1 / 1
| 1

reach
"DC-conditional deletion of Trabid impairs IL-12 and IL-23 production in DCs and the generation of Th1 and Th17 subsets of inflammatory T cells, rendering mice refractory to the induction of EAE 180."
ZRANB1 affects TP53BP1
| 1

reach
"Here, we demonstrate that TRABID deubiquitinase binds to 53BP1 at endogenous level and regulates 53BP1 retention at DSB sites."
ZRANB1 affects TCHP
| 1
ZRANB1 inhibits TCHP. 1 / 1
| 1

sparser
"Firstly, although Trabid indeed inactivated the APC tumor suppressor protein [ xref ], the previous study did not provide in vivo data to confirm this alleged oncogenic role of Trabid in CRC."
ZRANB1 affects TAB3
| 1

sparser
"Whereas the NZF motif of TAB2, TAB3 and ZRANB1 binds ubiquitin though a conserved TY/F motif (T674, F675 in TAB2), the NZF motif of RANBP2 does not associate with ubiquitin, due to the divergence of the TY/F motif to LV (L1489, V1490) ( xref , blue box) ( xref )."
ZRANB1 affects Span
| 1
ZRANB1 activates Span. 1 / 1
| 1

reach
"Loss of Trabid, a New Negative Regulator of the Drosophila Immune-Deficiency Pathway at the Level of TAK1, Reduces Life Span."
ZRANB1 affects STRIPAK
| 1
ZRANB1 binds STRIPAK. 1 / 1
| 1

reach
"Although this kinase and phosphatase complex had already been identified in the original full-length TRABID WT interactome, our data now show that the interaction between STRIPAK and TRABID is primarily mediated by the catalytic OTU domain rather than the ubiquitin binding properties of TRABID NZF (XREF_FIG, B and C)."
| PMC
ZRANB1 affects STRIP2
1 |
1 |

No evidence text available
ZRANB1 affects RBBP4
| 1
| 1

sparser
"Interestingly, knockdown of EZH2 impaired but did not abolish the interaction of ZRANB1 with SUZ12, RBBP4, and EED ( xref ), indicating that EZH2 partially mediates the association of ZRANB1 with the PRC2."
| 1

sparser
"Interestingly, knockdown of EZH2 impaired but did not abolish the interaction of ZRANB1 with SUZ12, RBBP4, and EED ( xref ), indicating that EZH2 partially mediates the association of ZRANB1 with the PRC2."
ZRANB1 affects PPP2R1B
1 |

No evidence text available
ZRANB1 affects PMF1
1 |
1 |

No evidence text available
ZRANB1 affects PGAM5
1 |
1 |

No evidence text available
ZRANB1 affects PARP inhibitor
| 1
ZRANB1 inhibits PARP inhibitor. 1 / 1
| 1

reach
"TRABID overexpression enables synthetic lethality to PARP inhibitor via prolonging 53BP1 retention at double-strand breaks."
ZRANB1 affects OTUD7B
| 1
| 1

sparser
"Co-immunoprecipitation studies indicated that TRAF6 was able to interact with both Cezanne and TRABID."
ZRANB1 affects OTUB1
| 1
| 1

sparser
"Crystal structures of the human OTUB1, OTUB2, TRABID, A20, and yeast Otu1 enzymes have revealed the conserved catalytic OTU domain which contains the S1 site, and N-terminal residues in TRABID and OTUB1 that form the S1’ site [ xref - xref , xref - xref ] (see xref S1/S1’ nomenclature)."
ZRANB1 affects O41957
1 |
1 |

No evidence text available
ZRANB1 increases the amount of Neoplastic Stem Cells. 1 / 1
| 1

reach
"The overexpression of ZRANB1 also induced the expression of CSC markers in CRC cells."
ZRANB1 affects Neoplasms
| 1
| 1

eidos
"ZRANB1 enhances stem-cell-like features and accelerates tumor progression by regulating Sox9-mediated USP22 / Wnt / beta-catenin pathway in colorectal cancer ."
ZRANB1 affects NXF1
1 |
1 |

No evidence text available
ZRANB1 affects NSC267309
| 1
ZRANB1 binds NSC267309 and OTU domain. 1 / 1
| 1

reach
"The molecular modeling of the bindings of NSC112200, NSC267309 and NSC60650 to TRABID OTU domain suggests that while all three compounds can form electrostatic interactions with the side chain of E522 and the backbone NH of T556, both NSC112200 and NSC267309 can form an additional hydrogen bond with the side chain of S491."
ZRANB1 affects NSC112200
| 1
ZRANB1 activates NSC112200. 1 / 1
| 1

reach
"Moreover, we assessed the viability of NSC112200 treated ZRANB1-knockout HEK293A cells, and we found that they were much more resistant to NSC112200 than isogenic ZRANB1 wild-type cells; re-expression of ZRANB1 in these ZRANB1-knockout cells restored their sensitivity to NSC112200 (XREF_FIG)."
ZRANB1 affects NELFCD
| 1
ZRANB1 activates NELFCD. 1 / 1
| 1

reach
"DC-conditional deletion of Trabid impairs IL-12 and IL-23 production in DCs and the generation of Th1 and Th17 subsets of inflammatory T cells, rendering mice refractory to the induction of EAE 180."

reach
"Finally, concomitant loss of pirk and trabid led to a 5-fold induction of dipt over and above wild type activation levels (XREF_FIG)."
ZRANB1 affects Mice
| 1
ZRANB1 activates Mice. 1 / 1
| 1

reach
"Conditional deletion of Zranb1 in dendritic cells impairs IL-12 and IL-23 production and the generation of T 1 and T 17 subsets of inflammatory T cells, rendering mice refractory to the induction of experimental autoimmune encephalomyelitis (EAE) ."
ZRANB1 affects MOV10
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1 |

No evidence text available
ZRANB1 affects MOB4
1 |
1 |

No evidence text available
ZRANB1 affects MAP4K4
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1 |

No evidence text available
ZRANB1 affects LC3 puncta
| 1
ZRANB1 activates LC3 puncta. 1 / 1
| 1

reach
"Remarkably, UBE3C depletion induced upregulation of VPS34 expression, LC3 puncta and LC3 lipidation in cells cultured in DMEM or EBSS were all reversed by TRABID knockdown."
ZRANB1 affects LC3 lipidation
| 1
ZRANB1 activates LC3 lipidation. 1 / 1
| 1

eidos
"Furthermore , in cells treated with bafilomycin A1 to block autophagic turnover , TRABID knockdown still reduced LC3 lipidation but did not alter p62 level ( Fig. 1c ) , indicating a promoting role of TRABID in autophagosome formation ."
ZRANB1 affects KEAP1
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1 |

No evidence text available
ZRANB1 affects K48
| 1
ZRANB1 inhibits K48. 1 / 1
| 1

eidos
"Regardless of the mechanism that TRABID reduces K48 linkages from the substrate , the partially overlapping chain type specificity of UBE3C and TRABID , as well as their opposite roles in regulating VPS34 , suggest that they function as an E3 ligase-DUB pair to govern the K29 / K48 ubiquitination status and the stability of a set of cellular proteins ."
ZRANB1 affects K29
| 1
ZRANB1 inhibits K29. 1 / 1
| 1

eidos
"TRABID diminishes the K29 / K48 ubiquitination on VPS34 and promotes autophagosome maturation ."
ZRANB1 affects IL23
| 1
ZRANB1 inhibits IL23. 1 / 1
| 1

reach
"Moreover ZRANB1 deficiency in macrophages and dendritic cells impairs the induction of IL-12 and IL-23 by the regulation of histone modifications at the IL-12 promoter, indicating a role of ZRANB1 in mediating inflammatory responses 18 and macrophage activation 19."
| PMC
ZRANB1 affects IL12A
| 1
ZRANB1-C443A activates IL12A. 1 / 1
| 1

reach
"In similar experiments using BMDCs, reconstitution of DC-cKO BMDCs with wild-type Trabid, but not C443A Trabid, rescued the induction of Il12a, Il12b, and Il23a genes (XREF_FIG)."
ZRANB1 affects Histone
| 1
| 1

reach
"To assess the functional role of Trabid mediated histone modifications at the Il12 promoters, we determined the binding level of RNA polymerase II (Pol II) preinitiation complex components, including Pol II, serine 5 phosphorylated Pol II (Pol II pS5) and the general transcription factor subunits TFIIB and TFIID, in the Il12 and Il23 promoters."
ZRANB1 affects Half-Life
| 1
| 1

eidos
"TRABID knockdown decreased VPS34 protein abundance and half-life , whereas TRABID overexpression enhanced VPS34 expression and stability ( Fig. 2i-l ) ."
ZRANB1 affects HERC2
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1 |

No evidence text available
ZRANB1 affects H3K27me3
| 1
ZRANB1 inhibits H3K27me3. 1 / 1
| 1

reach
"Moreover, ablation of ZRANB1 abrogated H3K27me3, but not H3K27me1 or H3K27me2 (XREF_FIG)."
ZRANB1 affects H3K27me2
| 1
ZRANB1 inhibits H3K27me2. 1 / 1
| 1

reach
"Moreover, ablation of ZRANB1 abrogated H3K27me3, but not H3K27me1 or H3K27me2 (XREF_FIG)."
ZRANB1 affects H3K27me1
| 1
ZRANB1 inhibits H3K27me1. 1 / 1
| 1

reach
"Moreover, ablation of ZRANB1 abrogated H3K27me3, but not H3K27me1 or H3K27me2 (XREF_FIG)."
ZRANB1 affects GCC2
1 |
1 |

No evidence text available
ZRANB1 affects FGFR1OP2
1 |

No evidence text available
ZRANB1 affects FBXW11
1 |
1 |

No evidence text available
ZRANB1 affects FAM126A
| 1
| 1

reach
"More importantly, ZRANB1 regulated LOXL2 through specificity protein 1 (SP1) and SP1 overexpression rescued the suppression of HCC growth and metastasis induced by ZRANB1 knockdown."
| 1
| 1

reach
"TRABID promotes experimental autoimmune encephalitis (EAE) by stabilizing JMJD2D at the Il12 promoter, enhancing IL-12 production and immunopathology (91)."
ZRANB1 affects EED
| 1
| 1

sparser
"Interestingly, knockdown of EZH2 impaired but did not abolish the interaction of ZRANB1 with SUZ12, RBBP4, and EED ( xref ), indicating that EZH2 partially mediates the association of ZRANB1 with the PRC2."
| 1

reach
"We next analyzed the effect of Trabid deficiency on TLR stimulated DC activation and cytokine expression in vitro."
ZRANB1 affects DFCP1 puncta
| 1
ZRANB1 activates DFCP1 puncta. 1 / 1
| 1

eidos
"However , TRABID knockdown diminished DFCP1 puncta , ATG16 puncta , and ATG14 puncta ( Fig. 1f , g and Supplementary Fig. 1d ) ."
ZRANB1 affects DAB2IP
| 1
ZRANB1 decreases the amount of DAB2IP. 1 / 1
| 1

reach
"We then examined the expression of 10 previously reported PRC2 target genes, and we found that ADRB2 and DAB2IP were significantly upregulated by knockdown of EZH2 in MDA-MB-231 cells (XREF_SUPPLEMENTARY); consistently, knockdown of ZRANB1 in MDA-MB-231 cells also increased ADRB2 and DAB2IP mRNA levels (XREF_SUPPLEMENTARY)."

eidos
"TRABID deubiquitinates K29-linked polyubiquitination of 53BP1 mediated by E3 ubiquitin ligase SPOP and prevents 53BP1 dissociation from DSBs , consequently inducing HR defects and chromosomal instability ."
ZRANB1 affects Cell Viability
| 1
ZRANB1 inhibits Cell Viability. 1 / 1
| 1

sparser
"A ZRANB1 Inhibitor Destabilizes EZH2 and Inhibits Cell Viability through ZRANB1."
| 1

reach
"A ZRANB1 Inhibitor Destabilizes EZH2 and Inhibits Cell Viability through ZRANB1."
ZRANB1 affects Casp14
| 1
ZRANB1 activates Casp14. 1 / 1
| 1

reach
"Conditional deletion of Zranb1 in dendritic cells impairs IL-12 and IL-23 production and the generation of T H 1 and T H 17 subsets of inflammatory T cells, rendering mice refractory to the induction of experimental autoimmune encephalomyelitis (EAE) 191 ."
ZRANB1 affects CXXC1
| 1
| 1

sparser
"We further show that the N-terminal Npl4-like zinc finger (NZF1) domain of the K29/K33-specific deubiquitinase TRABID specifically binds K29/K33-linked diUb, and a crystal structure of this complex explains TRABID specificity and suggests a model for chain binding by TRABID."
ZRANB1 affects CORO7
1 |
1 |

No evidence text available
ZRANB1 affects CGAS
| 1
ZRANB1 inhibits CGAS. 1 / 1
| 1

eidos
"TRABID inhibition causes micronuclei through a combinatory defect in mitosis and autophagy and protects cGAS from autophagic degradation , thereby activating the cGAS / STING innate immunity pathway ."
ZRANB1 affects CACYBP
1 |
1 |

No evidence text available
ZRANB1 affects BICD2
1 |
1 |

No evidence text available
ZRANB1 affects BECN1
| 1
ZRANB1 inhibits BECN1. 1 / 1
| 1

reach
"Among the subunits of VPS34 complex, TRABID overexpression reduced the ubiquitination level of transfected and endogenous VPS34, but not AMBRA1, Beclin-1, ATG14 and UVRAG."
ZRANB1 affects AXIN2
| 1
ZRANB1 decreases the amount of AXIN2. 1 / 1
| 1

reach
"Secondly, the TRABID shRNAs failed to downregulate Wnt and beta-catenin-mediated transcription activity or endogenous Wnt target gene Axin2 mRNA levels in these tumor cells."
ZRANB1 affects ATG16
| 1
ZRANB1 activates ATG16. 1 / 1
| 1

reach
"However, TRABID knockdown diminished DFCP1 puncta, ATG16 puncta, and ATG14 puncta."
ZRANB1 affects ATG16 puncta
| 1
ZRANB1 activates ATG16 puncta. 1 / 1
| 1

eidos
"However , TRABID knockdown diminished DFCP1 puncta , ATG16 puncta , and ATG14 puncta ( Fig. 1f , g and Supplementary Fig. 1d ) ."
ZRANB1 affects ATG14 puncta
| 1
ZRANB1 activates ATG14 puncta. 1 / 1
| 1

eidos
"However , TRABID knockdown diminished DFCP1 puncta , ATG16 puncta , and ATG14 puncta ( Fig. 1f , g and Supplementary Fig. 1d ) ."
ZRANB1 affects ANK1
| 1
| 1

reach
"Indeed, these residues are reminiscent of the TPLH motif that is characteristic for internal Ank repeats XREF_BIBR, and it is possible that other Ank repeat containing proteins may bind Ub in a similar fashion to TRABID."
ZRANB1 affects ANK
| 1
Ubiquitin binds ZRANB1 and ANK. 1 / 1
| 1

sparser
"This confirmed that the Ank domain of TRABID interacts with Ub."
ZRANB1 affects AMBRA1
| 1
| 1

reach
"Among the subunits of VPS34 complex, TRABID overexpression reduced the ubiquitination level of transfected and endogenous VPS34, but not AMBRA1, Beclin-1, ATG14 and UVRAG."
ZRANB1 affects ALDH18A1
1 |

No evidence text available
ZRANB1 affects ADRB2
| 1
ZRANB1 decreases the amount of ADRB2. 1 / 1
| 1

reach
"We then examined the expression of 10 previously reported PRC2 target genes, and we found that ADRB2 and DAB2IP were significantly upregulated by knockdown of EZH2 in MDA-MB-231 cells (XREF_SUPPLEMENTARY); consistently, knockdown of ZRANB1 in MDA-MB-231 cells also increased ADRB2 and DAB2IP mRNA levels (XREF_SUPPLEMENTARY)."
ZNF414 affects ZRANB1
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1 |

No evidence text available
WIPI1 affects ZRANB1
| 1
| 1

sparser
"Inactive TRABID forms puncta enriched in atypical polyUb."

No evidence text available
Ubiquitin affects TAB3
| 1

sparser
"Whereas the NZF motif of TAB2, TAB3 and ZRANB1 binds ubiquitin though a conserved TY/F motif (T674, F675 in TAB2), the NZF motif of RANBP2 does not associate with ubiquitin, due to the divergence of the TY/F motif to LV (L1489, V1490) ( xref , blue box) ( xref )."
Ubiquitin affects ANK
| 1
Ubiquitin binds ZRANB1 and ANK. 1 / 1
| 1

sparser
"This confirmed that the Ank domain of TRABID interacts with Ub."
Ub binding fold affects ZRANB1
| 1
Ub binding fold inhibits ZRANB1. 1 / 1
| 1

reach
"A novel Ub binding fold, the AnkUBD, further restricts the linkage specificity of the TRABID OTU domain and makes TRABID most efficient for Lys29- and Lys33-linkages."
UVRAG affects ATG14
| 1
| 1

sparser
"Immunoprecipitation analysis revealed the association of TRABID with both ATG14 and UVRAG, along with the common subunits of VPS34 complex, in cells cultured in DMEM or EBSS (Supplementary Fig.  xref )."
USP1 affects USP9X, and ZRANB1
| 1
| 1

sparser
"In this study, we demonstrated that Usp1, Usp9 and Trabid are interacting proteins of Mib and Mib2 by yeast two-hybrid and immunoprecipitation."
UCHL3 affects ZRANB1
| 1
UCHL3 activates ZRANB1. 1 / 1
| 1

reach
"Structure of a USP20 inhibitor from GSK.Figure 29 Structure of a USP30 inhibitor.Structures of UCHL1 inhibitors.VAE(OMe)-FMK Structure of a weak tripeptide FMK UCHL1 inhibitor.Figure 33 Structures of UCHL3 inhibitors.Structures of TRABID and RPN11 inhibitors."
UBP1 affects ZRANB1
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UBP1 decreases the amount of ZRANB1. 1 / 1
1 |

No evidence text available
UBI4 affects ZRANB1
| 1
| 1

sparser
"We focused on the NZF1 of TRABID, which binds to K29 and K33 polyUb and pulls down small amounts of M1 and K63 chains ( xref D)."
UBE2S affects ZRANB1
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1 |

No evidence text available
UBD affects gag
| 1
ZRANB1 binds UBD and gag. 1 / 1
| 1

sparser
"We found that the TRABID N terminus, which contains three Npl4-type zinc finger (NZF) UBDs, specifically binds K29- and K33-linked diUb, and specificity can be attributed to the first NZF domain (NZF1)."
TWIST1 affects GST
| 1
| 1

sparser
"We also demonstrated that Trabid mainly interacted with the FL and the 169–202 amino acid fragment (Twist1 box domain) of GST-Twist1, but not with other Twist1 fragments and GST alone (Fig.  xref )."
TUMOR-SUPPRESSOR-PROTEIN affects ZRANB1
| 1
ZRANB1 binds TUMOR-SUPPRESSOR-PROTEIN. 1 / 1
| 1

trips
"We further show that Trabid can bind to and deubiquitylate the APC tumor suppressor protein, a negative regulator of Wnt-mediated transcription."
TRAF6 affects OTUD7B
| 1
| 1

sparser
"Co-immunoprecipitation studies indicated that TRAF6 was able to interact with both Cezanne and TRABID."
TP53BP1 affects ZRANB1
| 1

reach
"Here, we demonstrate that TRABID deubiquitinase binds to 53BP1 at endogenous level and regulates 53BP1 retention at DSB sites."
TCF12 affects ZRANB1
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TCF12 decreases the amount of ZRANB1. 1 / 1
1 |

No evidence text available
TAB3 affects ZRANB1
| 1

sparser
"Whereas the NZF motif of TAB2, TAB3 and ZRANB1 binds ubiquitin though a conserved TY/F motif (T674, F675 in TAB2), the NZF motif of RANBP2 does not associate with ubiquitin, due to the divergence of the TY/F motif to LV (L1489, V1490) ( xref , blue box) ( xref )."
SUZ12 affects RBBP4
| 1
| 1

sparser
"Interestingly, knockdown of EZH2 impaired but did not abolish the interaction of ZRANB1 with SUZ12, RBBP4, and EED ( xref ), indicating that EZH2 partially mediates the association of ZRANB1 with the PRC2."
SUZ12 affects EZH2
| 1
| 1

sparser
"Furthermore, we observed the interaction of ZRANB1 with endogenous EZH2 and SUZ12 ( xref ) and, reciprocally, the interaction of either exogenous ( xref ) or endogenous ( xref ) EZH2 with endogenous ZRANB1, SUZ12, and EED, suggesting that ZRANB1 may regulate EZH2 that is present in the PRC2."
SUZ12 affects EED
| 1
| 1

sparser
"Interestingly, knockdown of EZH2 impaired but did not abolish the interaction of ZRANB1 with SUZ12, RBBP4, and EED ( xref ), indicating that EZH2 partially mediates the association of ZRANB1 with the PRC2."
STRIPAK affects ZRANB1
| 1
ZRANB1 binds STRIPAK. 1 / 1
| 1

reach
"Although this kinase and phosphatase complex had already been identified in the original full-length TRABID WT interactome, our data now show that the interaction between STRIPAK and TRABID is primarily mediated by the catalytic OTU domain rather than the ubiquitin binding properties of TRABID NZF (XREF_FIG, B and C)."
| PMC
STRIP2 affects ZRANB1
1 |
1 |

No evidence text available
STAT6 affects ZRANB1
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STAT6 decreases the amount of ZRANB1. 1 / 1
1 |

No evidence text available
SPZ1 affects ZRANB1
1 |
SPZ1 decreases the amount of ZRANB1. 1 / 1
1 |

No evidence text available
SMAD3 affects ZRANB1
1 |
SMAD3 decreases the amount of ZRANB1. 1 / 1
1 |

No evidence text available
RUBCN affects PIK3C3
| 1
| 1

sparser
"However, no association of TRABID with Rubicon, which forms a VPS34 complex with autophagy-inhibitory function xref , could be detected (Supplementary Fig.  xref )."
RORA affects ZRANB1
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RORA decreases the amount of ZRANB1. 1 / 1
1 |

No evidence text available
RFX1 affects ZRANB1
1 |
RFX1 decreases the amount of ZRANB1. 1 / 1
1 |

No evidence text available
REPIN1 affects ZRANB1
1 |
REPIN1 decreases the amount of ZRANB1. 1 / 1
1 |

No evidence text available
RBBP4 affects ZRANB1
| 1
| 1

sparser
"Interestingly, knockdown of EZH2 impaired but did not abolish the interaction of ZRANB1 with SUZ12, RBBP4, and EED ( xref ), indicating that EZH2 partially mediates the association of ZRANB1 with the PRC2."
| 1

sparser
"Interestingly, knockdown of EZH2 impaired but did not abolish the interaction of ZRANB1 with SUZ12, RBBP4, and EED ( xref ), indicating that EZH2 partially mediates the association of ZRANB1 with the PRC2."
PPP2R1B affects ZRANB1
1 |

No evidence text available
POU2F1 affects ZRANB1
1 |
POU2F1 decreases the amount of ZRANB1. 1 / 1
1 |

No evidence text available
PMF1 affects ZRANB1
1 |
1 |

No evidence text available
PIK3C3 affects RUBCN, and ZRANB1
| 1
| 1

sparser
"However, no association of TRABID with Rubicon, which forms a VPS34 complex with autophagy-inhibitory function xref , could be detected (Supplementary Fig.  xref )."
PHF20 affects Ubiquitin
| 1

sparser
"Whereas the NZF motif of TAB2, TAB3 and ZRANB1 binds ubiquitin though a conserved TY/F motif (T674, F675 in TAB2), the NZF motif of RANBP2 does not associate with ubiquitin, due to the divergence of the TY/F motif to LV (L1489, V1490) ( xref , blue box) ( xref )."
PHF20 affects TAB2, and ZRANB1
| 1
| 1

sparser
"For example, NZF domains of TAB2 (TAK1 binding protein 2) or TRABID (TRAF binding domain) preferentially bind to Lys63- over Lys48-linked ubiquitin chains xref ."
PHF20 affects TAB2, TAB3, Ubiquitin, and ZRANB1
| 1

sparser
"Whereas the NZF motif of TAB2, TAB3 and ZRANB1 binds ubiquitin though a conserved TY/F motif (T674, F675 in TAB2), the NZF motif of RANBP2 does not associate with ubiquitin, due to the divergence of the TY/F motif to LV (L1489, V1490) ( xref , blue box) ( xref )."
PGAM5 affects ZRANB1
1 |
1 |

No evidence text available
OTUD7B affects ZRANB1
| 1
| 1

sparser
"Co-immunoprecipitation studies indicated that TRAF6 was able to interact with both Cezanne and TRABID."
OTUB1 affects ZRANB1
| 1
| 1

sparser
"Crystal structures of the human OTUB1, OTUB2, TRABID, A20, and yeast Otu1 enzymes have revealed the conserved catalytic OTU domain which contains the S1 site, and N-terminal residues in TRABID and OTUB1 that form the S1’ site [ xref - xref , xref - xref ] (see xref S1/S1’ nomenclature)."
OTU domain affects NSC267309
| 1
ZRANB1 binds NSC267309 and OTU domain. 1 / 1
| 1

reach
"The molecular modeling of the bindings of NSC112200, NSC267309 and NSC60650 to TRABID OTU domain suggests that while all three compounds can form electrostatic interactions with the side chain of E522 and the backbone NH of T556, both NSC112200 and NSC267309 can form an additional hydrogen bond with the side chain of S491."
OTU domain affects DDB2
| 1
ZRANB1 binds DDB2 and OTU domain. 1 / 1
| 1

reach
"Immunoprecipitation assay showed that the interaction of TRABID and DDB2 is mediated by their OTU domain and N-terminal region, respectively."
O41957 affects ZRANB1
1 |
1 |

No evidence text available
NXF1 affects ZRANB1
1 |
1 |

No evidence text available
NSC267309 affects ZRANB1
| 1
ZRANB1 binds NSC267309 and OTU domain. 1 / 1
| 1

reach
"The molecular modeling of the bindings of NSC112200, NSC267309 and NSC60650 to TRABID OTU domain suggests that while all three compounds can form electrostatic interactions with the side chain of E522 and the backbone NH of T556, both NSC112200 and NSC267309 can form an additional hydrogen bond with the side chain of S491."
NSC1122002 affects ZRANB1
| 1
NSC1122002 inhibits ZRANB1. 1 / 1
| 1

reach
"NSC1122002 is a novel inhibitor of TRABID, and this study aimed to examine the effects of NSC1122002 on the expression of IL-12 and IL-23 both in vitro and in vivo in the context of collagen-induced arthritis, consequently to evaluate its potential as a drug candidate for treating inflammatory disease."
Menthol affects ZRANB1
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Menthol decreases the amount of ZRANB1. 1 / 1
1 |

No evidence text available
MOV10 affects ZRANB1
1 |
1 |

No evidence text available
MOB4 affects ZRANB1
1 |
1 |

No evidence text available
MITF affects ZRANB1
| 1
| 1

sparser
"Significantly, WT‐CLK4 disrupted the interaction between ZRANB1 and MITF (Figure  xref )."
MIB2 affects USP1, USP9X, and ZRANB1
| 1
| 1

sparser
"Mib and Mib2 interact with deubiquitylases Usp1, Usp9 and Trabid."
MECOM affects ZRANB1
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MECOM decreases the amount of ZRANB1. 1 / 1
1 |

No evidence text available
MAP4K4 affects ZRANB1
1 |
1 |

No evidence text available
MAP3K7 affects ZRANB1
| 1
| 1

reach
"The deubiquitinase Trabid interacted with TAK1, reducing immune signalling output and K63 linked ubiquitination."
LMO2 affects ZRANB1
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LMO2 decreases the amount of ZRANB1. 1 / 1
1 |

No evidence text available
KEAP1 affects ZRANB1
1 |
1 |

No evidence text available
KDM4D affects ZRANB1
| 1
ZRANB1-C443A binds KDM4D. 1 / 1
| 1

reach
"Furthermore, both wild-type and C443A Trabid physically associated with endogenous Jmjd2d in reconstituted KO MEFs (XREF_FIG and XREF_SUPPLEMENTARY)."
K 7174 affects ZRANB1
1 |
K 7174 increases the amount of ZRANB1. 1 / 1
1 |

No evidence text available
IRF1 affects ZRANB1
1 |
IRF1 decreases the amount of ZRANB1. 1 / 1
1 |

No evidence text available
HIF1AN affects USP1, USP9X, and ZRANB1
| 1
| 1

sparser
"The interaction of Usp1, Usp9, Trabid, Fih-1 and Mib/Mib2 were confirmed by immunoprecipitation."
HIF1AN affects MIB2, and ZRANB1
| 1
| 1

sparser
"Since both Mib and Mib2 can bind to Fih-1 and Trabid, we next asked whether Mib and Mib2 could promote the most C-terminal RF-dependent substrate ubiquitylation."
HIF1AN affects MIB2, USP1, USP9X, and ZRANB1
| 1
| 1

sparser
"Usp1, Usp9, Trabid and Fih-1 also bound to zebrafish Mib2, a Mib homolog with similar structural domains and functions."
HERC2 affects ZRANB1
1 |
1 |

No evidence text available
HECTD1 affects APC
| 1
| 1

reach
"Additionally, it was shown that the Trabid, Hectd1, and APC complex interacts with proteins composing the striatin interacting phosphatase and kinase (STRIPAK) complex that regulates cortical actin cytoskeleton dynamics [XREF_BIBR]."
GST affects TWIST1, and ZRANB1
| 1
| 1

sparser
"We also demonstrated that Trabid mainly interacted with the FL and the 169–202 amino acid fragment (Twist1 box domain) of GST-Twist1, but not with other Twist1 fragments and GST alone (Fig.  xref )."
GFI1 affects ZRANB1
1 |
GFI1 decreases the amount of ZRANB1. 1 / 1
1 |

No evidence text available
GCC2 affects ZRANB1
1 |
1 |

No evidence text available
FOXF2 affects ZRANB1
1 |
FOXF2 decreases the amount of ZRANB1. 1 / 1
1 |

No evidence text available
FGFR1OP2 affects ZRANB1
1 |

No evidence text available
FBXW11 affects ZRANB1
1 |
1 |

No evidence text available
EZH2 affects SUZ12, and ZRANB1
| 1
| 1

sparser
"Furthermore, we observed the interaction of ZRANB1 with endogenous EZH2 and SUZ12 ( xref ) and, reciprocally, the interaction of either exogenous ( xref ) or endogenous ( xref ) EZH2 with endogenous ZRANB1, SUZ12, and EED, suggesting that ZRANB1 may regulate EZH2 that is present in the PRC2."
ETV4 affects ZRANB1
1 |
ETV4 decreases the amount of ZRANB1. 1 / 1
1 |

No evidence text available
EED affects ZRANB1
| 1
| 1

sparser
"Interestingly, knockdown of EZH2 impaired but did not abolish the interaction of ZRANB1 with SUZ12, RBBP4, and EED ( xref ), indicating that EZH2 partially mediates the association of ZRANB1 with the PRC2."
DDB2 affects OTU domain, and ZRANB1
| 1
ZRANB1 binds DDB2 and OTU domain. 1 / 1
| 1

reach
"Immunoprecipitation assay showed that the interaction of TRABID and DDB2 is mediated by their OTU domain and N-terminal region, respectively."
1 |
D-glucopyranose decreases the amount of ZRANB1. 1 / 1
1 |

No evidence text available

reach
"Deubiquitinase ZRANB1 drives hepatocellular carcinoma progression through SP1-LOXL2 axis."
CXXC1 affects ZRANB1
| 1
| 1

sparser
"We further show that the N-terminal Npl4-like zinc finger (NZF1) domain of the K29/K33-specific deubiquitinase TRABID specifically binds K29/K33-linked diUb, and a crystal structure of this complex explains TRABID specificity and suggests a model for chain binding by TRABID."
CORO7 affects ZRANB1
1 |
1 |

No evidence text available
CDX2 affects ZRANB1
1 |
CDX2 decreases the amount of ZRANB1. 1 / 1
1 |

No evidence text available
CACYBP affects ZRANB1
1 |
1 |

No evidence text available
BICD2 affects ZRANB1
1 |
1 |

No evidence text available
Antirheumatic Agents increases the amount of ZRANB1. 1 / 1
1 |

No evidence text available
AZM551248 affects ZRANB1
1 |
AZM551248 decreases the amount of ZRANB1. 1 / 1
1 |

No evidence text available
ATP12A affects ZRANB1
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ATP12A decreases the amount of ZRANB1. 1 / 1
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No evidence text available
ATG14 affects UVRAG, and ZRANB1
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"Immunoprecipitation analysis revealed the association of TRABID with both ATG14 and UVRAG, along with the common subunits of VPS34 complex, in cells cultured in DMEM or EBSS (Supplementary Fig.  xref )."
APC affects HECTD1, and ZRANB1
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"Additionally, it was shown that the Trabid, Hectd1, and APC complex interacts with proteins composing the striatin interacting phosphatase and kinase (STRIPAK) complex that regulates cortical actin cytoskeleton dynamics [XREF_BIBR]."
APC tumor suppressor protein affects ZRANB1
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ZRANB1 binds APC tumor suppressor protein. 1 / 1
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"We further show that Trabid can bind to and deubiquitylate the APC tumor suppressor protein, a negative regulator of Wnt mediated transcription."
ANK1 affects ZRANB1
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"Indeed, these residues are reminiscent of the TPLH motif that is characteristic for internal Ank repeats XREF_BIBR, and it is possible that other Ank repeat containing proteins may bind Ub in a similar fashion to TRABID."
ANK affects ZRANB1
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Ubiquitin binds ZRANB1 and ANK. 1 / 1
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"This confirmed that the Ank domain of TRABID interacts with Ub."
ALDH18A1 affects ZRANB1
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No evidence text available
2-hydroxypropanoic acid decreases the amount of ZRANB1. 1 / 1
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No evidence text available
1-methylanthracene increases the amount of ZRANB1. 1 / 1
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No evidence text available

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"Bioluminescent imaging of live animals revealed the consistent reduction of lung metastases in mice treated with DOPC encapsulated ZRANB1 siRNA, but not in mice treated with DOPC encapsulated scramble RNA oligonucleotides (XREF_FIG)."
4,4'-diaminodiphenylmethane decreases the amount of ZRANB1. 1 / 1
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No evidence text available