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首页> 外文期刊>Molecular cancer research: MCR >mTORC2 Balances AKT Activation and eIF2 alpha Serine 51 Phosphorylation to Promote Survival under Stress
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mTORC2 Balances AKT Activation and eIF2 alpha Serine 51 Phosphorylation to Promote Survival under Stress

机译:MTORC2平衡AKT激活和EIF2α丝氨酸51磷酸化,以促进压力下的存活率

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摘要

The mTOR nucleates two complexes, namely mTOR complex 1 and 2 (mTORC1 and mTORC2), which are implicated in cell growth, survival, metabolism, and cancer. Phosphorylation of the alpha-subunit of translation initiation factor eIF2 at serine 51 (eIF2 alpha S51P) is a key event of mRNA translation initiation and a master regulator of cell fate during cellular stress. Recent studies have implicated mTOR signaling in the stress response, but its connection to eIF2 alpha S51P has remained unclear. Herein, we report that genetic as well as catalytic inhibition of mTORC2 induces eIF2 alpha S51P. On the other hand, the allosteric inhibitor rapamycin induces eIF2 alpha S51P through pathways that are independent of mTORC1 inactivation. Increased eIF2 alpha S51P by impaired mTORC2 depends on the inactivation of AKT, which primes the activation of the endoplasmic reticulum (ER)-resident kinase PERK/PEK. The biologic function of eIF2 alpha S51P was characterized in tuberous sclerosis complex (TSC)-mutant cells, which are defective in mTORC2 and AKT activity. TSC-mutant cells exhibit increased PERK activity, which is downregulated by the reconstitution of the cells with an activated form of AKT1. Also, TSC-mutant cells are increasingly susceptible to ER stress, which is reversed by AKT1 reconstitution. The susceptibility of TSC-mutant cells to ER stress is further enhanced by the pharmacologic inhibition of PERK or genetic inactivation of eIF2 alpha S51P. Thus, the PERK/eIF2 alpha S51P arm is an important compensatory prosurvival mechanism, which substitutes for the loss of AKT under ER stress. (C) 2015 AACR.
机译:MTOR成核两种络合物,即MTOR复合物1和2(MTORC1和MTORC2),其涉及细胞生长,存活,代谢和癌症。在丝氨酸51(EIF2αS51P)下翻译引发因子EIF2的α-亚基的磷酸化是MRNA翻译引发和细胞胁迫期间细胞命运的母部调节剂的关键事件。最近的研究在应力响应中具有暗示的MTOR信号传导,但其与EIF2αS51p的连接仍不清楚。在此,我们报告遗传学以及MTORC2的催化抑制诱导EIF2αS51p。另一方面,变构抑制剂雷帕霉素通过与MTORC1失活的途径诱导EIF2αS51P。通过受损的MTORC2增加EIF2αS51p取决于Akt的失活,这引起了内质网(ER) - 抗酶PERK / PEK的激活。 EIF2αS51p的生物功能的特征在于肿块硬化复合体(TSC) - 级细胞,其在MTORC2和AKT活性中有缺陷。 TSC-突变体细胞表现出增加的富集活性,其通过用活化形式的Akt1重构细胞来下调。此外,TSC-突变细胞越来越容易受到ER应激的影响,这是由AKT1重构反转的。通过EIF2αS51p的PERK或遗传失活的药理学抑制,进一步增强了TSC-突变细胞对ER应激的敏感性。因此,PERK / EIF2αS51P臂是一个重要的补偿性剥离机制,其替代于ER应力下的AKT损失。 (c)2015年AACR。

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  • 来源
    《Molecular cancer research: MCR》 |2015年第10期|共12页
  • 作者单位

    McGill Univ Sir Mortimer B Davis Jewish Gen Hosp Lady Davis Inst Med Res Montreal PQ H3T 1E2;

    McGill Univ Sir Mortimer B Davis Jewish Gen Hosp Lady Davis Inst Med Res Montreal PQ H3T 1E2;

    Genentech Inc San Francisco CA 94080 USA;

    McGill Univ Sir Mortimer B Davis Jewish Gen Hosp Lady Davis Inst Med Res Montreal PQ H3T 1E2;

    McGill Univ Fac Med Dept Biochem Montreal PQ H3T 1E2 Canada;

    Lilly Res Labs Oncol Res Div Indianapolis IN USA;

    McGill Univ Hlth Ctr Dept Crit Care Montreal PQ Canada;

    McGill Univ Sir Mortimer B Davis Jewish Gen Hosp Lady Davis Inst Med Res Montreal PQ H3T 1E2;

    Case Western Univ Sch Med Dept Nutr Cleveland OH USA;

    McGill Univ Sir Mortimer B Davis Jewish Gen Hosp Lady Davis Inst Med Res Montreal PQ H3T 1E2;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 肿瘤学;
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