IndraLab

Statements


TSC2 bound to TSC1 inhibits MTOR. 18 / 18
| 18

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"The TSC1 and TSC2 complex is the only known GTPase for Rheb, serving to reduce Rheb-GTP levels, and thereby inhibit the activation of mTOR."

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"Once activated, AKT mediated phosphorylation of TSC2 (tuberous sclerosis complex 2) inhibits the TSC1 and TSC2 complex function, and thus activates mTOR signaling."

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"The TSC1 and TSC2 complex normally inhibits mTOR activity, with loss of function mutations resulting in overactive mTOR and consequential increased protein synthesis and decreased protein degradation [XREF_BIBR, XREF_BIBR, XREF_BIBR]."

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"40 TSC1 and TSC2 complex inhibits mTOR activity by activating the GTPase activity of Ras homologue enriched in brain, and both Akt and AMPK converged at TSC1 and TSC2 to regulate mTOR activity."

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"Under the condition that AMPK is activated, AMPK phosphorylates tuberous sclerosis complex 2 (TSC2) and increases the activity of the TSC1 and TSC2 complex to inhibit mTOR."

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"The TSC1 and TSC2 complex inactivates Rheb to inhibit mTOR signaling, which would lead to autophagy."

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"The TSC1 and TSC2 heterodimer inhibits mTOR function through Rheb inactivation."

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"Overall, these results demonstrate that activation of p38 inhibits the TSC1 and TSC2 complex allowing mTOR activation potentially via MK2 dependent phosphorylation of TSC2 at Ser 1210."

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"CTuberin binds to hamartin and Rheb and inhibits mTOR activation."
| PMC

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"Interestingly, our RNA sequencing analysis of Etv TKO mutant lenses showed significant down-regulation of Tsc2, which forms a heterodimer with Tsc1 to inhibit mTOR activity (Figure 3C)."

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"Tuberin and hamartin form heterodimeric complexes that negatively regulate the mTOR serine threonine kinase."

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"Activation of AMPK induces activation of the TSC2 and TSC1 complex to inhibit mTOR [29]."

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"Hamartin and tuberin, the TSC1 and TSC2 gene products, form a complex that inhibits mammalian target of rapamycin (mTOR) in a conserved cellular signaling pathway (PI3kinase- Akt-mTOR pathway) that regulates nutrient uptake, growth and protein translation [9], [10], [11]."

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"TSC1 is a subunit of the TSC1 and TSC2 complex that suppresses the mTOR pathway by inhibiting the small GTPase RAS homolog enriched in brain (Rheb), which is upstream of mTORC1."

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"However, when growth factors are depleted, the active TSC1 and TSC2 complex suppresses mTOR activity, followed by induction of autophagy."

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"The TSC1 and TSC2 complex negatively regulates mTOR through the GTPase activating protein activity."

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"The tuberous sclerosis 1 and 2 complex (Tsc1 and Tsc2 complex) negatively regulates mTOR activity [XREF_BIBR - XREF_BIBR]."

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"For example, the TSC1 and TSC2 complex inhibits mTOR functions by inactivating Rheb; Rheb binds and activates mTOR only when the former is in its GTP bound form."