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mTOR phosphorylates IMP2 to promote IGF2 mRNA translation by internal ribosomal entry.

机译:mTOR通过内部核糖体进入使IMP2磷酸化,从而促进IGF2 mRNA的翻译。

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摘要

Variants in the IMP2 (insulin-like growth factor 2 [IGF2] mRNA-binding protein 2) gene are implicated in susceptibility to type 2 diabetes. We describe the ability of mammalian target of rapamycin (mTOR) to regulate the cap-independent translation of IGF2 mRNA through phosphorylation of IMP2, an oncofetal RNA-binding protein. IMP2 is doubly phosphorylated in a rapamycin-inhibitable, amino acid-dependent manner in cells and by mTOR in vitro. Double phosphorylation promotes IMP2 binding to the IGF2 leader 3 mRNA 5' untranslated region, and the translational initiation of this mRNA through eIF-4E- and 5' cap-independent internal ribosomal entry. Unexpectedly, the interaction of IMP2 with mTOR complex 1 occurs through mTOR itself rather than through raptor. Whereas depletion of mTOR strongly inhibits IMP2 phosphorylation in cells, comparable depletion of raptor has no effect; moreover, the ability of mTOR to phosphorylate IMP2 in vitro is unaffected by the elimination of raptor. Dual phosphorylation of IMP2 at the mTOR sites is evident in the mouse embryo, likely coupling nutrient sufficiency to IGF2 expression and fetal growth. Doubly phosphorylated IMP2 is also widely expressed in adult tissues, including islets of Langerhans.
机译:IMP2(胰岛素样生长因子2 [IGF2] mRNA结合蛋白2)基因的变异与2型糖尿病的易感性有关。我们描述了雷帕霉素(mTOR)的哺乳动物靶标通过IMP2(一种胎粪RNA结合蛋白)的磷酸化来调节IGF2 mRNA的帽依赖性翻译的能力。 IMP2在细胞中和通过mTOR在体外以雷帕霉素抑制性氨基酸依赖性方式被双磷酸化。双重磷酸化促进了IMP2与IGF2前导3 mRNA 5'非翻译区的结合,并通过eIF-4E和5'帽不依赖内部核糖体进入而使该mRNA的翻译起始。出乎意料的是,IMP2与mTOR复合物1的相互作用是通过mTOR本身而不是通过猛禽发生的。消耗mTOR会强烈抑制细胞中的IMP2磷酸化,而可比的猛禽消耗则没有作用。此外,mTOR体外磷酸化IMP2的能力不受猛禽消除的影响。在小鼠胚胎中,mTOR位点的IMP2发生了双重磷酸化,这很可能是养分充足与IGF2表达和胎儿生长的耦合。双重磷酸化的IMP2在成年组织中也广泛表达,包括Langerhans胰岛。

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