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调控蛋白质合成的延伸阶段可提高翻译准确性并调节寿命。

Regulation of the Elongation Phase of Protein Synthesis Enhances Translation Accuracy and Modulates Lifespan.

机构信息

Nutrition & Metabolism, South Australian Health & Medical Research Institute, Adelaide, SA, Australia; Centre for Biological Sciences, University of Southampton, Southampton, UK.

Departamento de Microbiologia, Universidade Federal de Minas Gerais, Belo Horizonte, MG, Brazil.

出版信息

Curr Biol. 2019 Mar 4;29(5):737-749.e5. doi: 10.1016/j.cub.2019.01.029. Epub 2019 Feb 14.

Abstract

Maintaining accuracy during protein synthesis is crucial to avoid producing misfolded and/or non-functional proteins. The target of rapamycin complex 1 (TORC1) pathway and the activity of the protein synthesis machinery are known to negatively regulate lifespan in many organisms, although the precise mechanisms involved remain unclear. Mammalian TORC1 signaling accelerates the elongation stage of protein synthesis by inactivating eukaryotic elongation factor 2 kinase (eEF2K), which, when active, phosphorylates and inhibits eEF2, which mediates the movement of ribosomes along mRNAs, thereby slowing down the rate of elongation. We show that eEF2K enhances the accuracy of protein synthesis under a range of conditions and in several cell types. For example, our data reveal it links mammalian (m)TORC1 signaling to the accuracy of translation. Activation of eEF2K decreases misreading or termination readthrough errors during elongation, whereas knocking down or knocking out eEF2K increases their frequency. eEF2K also promotes the correct recognition of start codons in mRNAs. Reduced translational fidelity is known to correlate with shorter lifespan. Consistent with this, deletion of the eEF2K ortholog or other factors implicated in translation fidelity in Caenorhabditis elegans decreases lifespan, and eEF2K is required for lifespan extension induced by nutrient restriction. Our data uncover a novel mechanism linking nutrient supply, mTORC1 signaling, and the elongation stage of protein synthesis, which enhances the accuracy of protein synthesis. Our data also indicate that modulating translation elongation and its fidelity affects lifespan.

摘要

在蛋白质合成过程中保持准确性对于避免产生错误折叠和/或无功能的蛋白质至关重要。雷帕霉素复合物 1(TORC1)途径和蛋白质合成机制的活性已知会负调控许多生物的寿命,尽管涉及的确切机制仍不清楚。哺乳动物 TORC1 信号通过使真核延伸因子 2 激酶(eEF2K)失活来加速蛋白质合成的延伸阶段,当 eEF2K 活跃时,它会磷酸化并抑制 eEF2,eEF2 介导核糖体沿 mRNA 的移动,从而减缓延伸速度。我们表明,eEF2K 在多种条件下和几种细胞类型中提高蛋白质合成的准确性。例如,我们的数据表明它将哺乳动物(m)TORC1 信号与翻译的准确性联系起来。eEF2K 的激活减少了延伸过程中的误读或终止通读错误,而敲低或敲除 eEF2K 会增加它们的频率。eEF2K 还促进了正确识别 mRNA 中的起始密码子。已知翻译保真度降低与寿命缩短相关。与此一致的是,在秀丽隐杆线虫中删除 eEF2K 同源物或其他与翻译保真度相关的因素会降低寿命,并且 eEF2K 是营养限制诱导的寿命延长所必需的。我们的数据揭示了一种将营养供应、mTORC1 信号和蛋白质合成的延伸阶段联系起来的新机制,该机制提高了蛋白质合成的准确性。我们的数据还表明,调节翻译延伸及其保真度会影响寿命。

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