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首页> 外文期刊>Molecular cell >Insulin Activation of Rheb, a Mediator of mTOR/S6K/4E-BP Signaling, Is Inhibited by TSC1 and 2
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Insulin Activation of Rheb, a Mediator of mTOR/S6K/4E-BP Signaling, Is Inhibited by TSC1 and 2

机译:TSC1和2抑制mTOR / S6K / 4E-BP信号传导介质Rheb的胰岛素活化

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摘要

Tumor suppressor genes evolved as negative effectors of mitogen and nutrient signaling pathways, such that mutations in these genes can lead to pathological states of growth. Tuberous sclerosis (TSC) is a potentially devastating disease associated with mutations in two tumor suppressor genes, TSC1 and 2, that function as a complex to suppress signaling in the mTOR/S6K /4E-BP pathway. However, the inhibitory target of TSC1/2 and the mechanism by which it acts are unknown. Here we provide evidence that TSC1/2 is a GAP for the small GTPase Rheb and that insulin-mediated Rheb activation is PI3K dependent. Moreover, Rheb overexpression induces S6K1 phosphorylation and inhibits PKB phosphorylation, as do loss-of-function mutations in TSC1/2, but contrary to earlier reports Rheb has no effect on MAPK phosphorylation. Finally, coexpression of a human TSC2 cDNA harboring a disease-associated point mutation in the GAP domain, failed to stimulate Rheb GTPase activity or block Rheb activation of S6K1.
机译:肿瘤抑制基因进化为有丝分裂原和营养信号通路的负效应物,因此这些基因的突变可导致生长的病理状态。结节性硬化症(TSC)是一种潜在的破坏性疾病,与两个肿瘤抑制基因TSC1和2的突变相关,后者可作为复合物来抑制mTOR / S6K / 4E-BP途径中的信号传导。但是,尚不知道TSC1 / 2的抑制靶标及其作用机理。在这里,我们提供的证据表明TSC1 / 2是小GTPase Rheb的GAP,胰岛素介导的Rheb激活是PI3K依赖性的。此外,Rheb的过表达诱导S6K1磷酸化并抑制PKB磷酸化,TSC1 / 2中的功能丧失突变也是如此,但与早期报道相反,Rheb对MAPK磷酸化没有影响。最终,在GAP域中携带与疾病相关的点突变的人TSC2 cDNA的共表达未能刺激Rheb GTPase活性或阻止Rheb激活S6K1。

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