IndraLab

Statements



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"Collectively these data indicates that USP7 depletion causes genomic instability, one of the key hallmarks of cancer [XREF_BIBR]."

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"In this regard, Usp7 inhibition or depletion has been shown to impair cell cycle progression and proliferation also in a p53- independent manner by regulating genome stability and repair 69,88,89."

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"USP7 Depletion Causes Genomic Instability."

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"Collectively these data indicates that USP7 depletion may cause genomic instability, one of the hallmarks of cancer [XREF_BIBR]."

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"We observed that USP7 depletion induced genomic instability that may result from a change in stability of mitotic checkpoint proteins."

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"Geminin is important for genomic stability by binding chromatin licensing and DNA replication factor 1 (Cdt1) and preventing the formation of the pre-replicative complex, thereby inhibiting the premature entry of cells into the S phase Thus, USP7 deregulation can lead to DNA re-replication and genomic instability [23,30]."

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"In our study, we found that the simultaneous loss of RNF4 and USP7 significantly reduced DNA synthesis rate and increased genomic instability (figure 2)."

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"Depletion of USP7 in RNF4 knockouts reduces cell growth and increases genome instability."

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"Here, we found that USP7 depletion causes genomic instability characterized by abnormal chromosomes segregation, accumulation of micronuclei and increased aneuploidy."