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真核起始因子 3 与 80S 核糖体结合促进翻译延伸、线粒体稳态和肌肉健康。

eIF3 Associates with 80S Ribosomes to Promote Translation Elongation, Mitochondrial Homeostasis, and Muscle Health.

机构信息

School of Pharmaceutical Sciences, Fujian Provincial Key Laboratory of Innovative Drug Target Research, Xiamen University, Xiamen, Fujian 361102, China.

MOE Key Laboratory of Bioinformatics, Center for Synthetic & Systems Biology, School of Life Sciences, Tsinghua University, Beijing 100084, China; Joint Graduate Program of Peking-Tsinghua-National Institute of Biological Science, Tsinghua University, Beijing 100084, China.

出版信息

Mol Cell. 2020 Aug 20;79(4):575-587.e7. doi: 10.1016/j.molcel.2020.06.003. Epub 2020 Jun 25.

Abstract

eIF3, a multi-subunit complex with numerous functions in canonical translation initiation, is known to interact with 40S and 60S ribosomal proteins and translation elongation factors, but a direct involvement in translation elongation has never been demonstrated. We found that eIF3 deficiency reduced early ribosomal elongation speed between codons 25 and 75 on a set of ∼2,700 mRNAs encoding proteins associated with mitochondrial and membrane functions, resulting in defective synthesis of their encoded proteins. To promote elongation, eIF3 interacts with 80S ribosomes translating the first ∼60 codons and serves to recruit protein quality-control factors, functions required for normal mitochondrial physiology. Accordingly, eIF3e mice accumulate defective mitochondria in skeletal muscle and show a progressive decline in muscle strength. Hence, eIF3 interacts with 80S ribosomes to enhance, at the level of early elongation, the synthesis of proteins with membrane-associated functions, an activity that is critical for mitochondrial physiology and muscle health.

摘要

真核起始因子 3(eIF3)是一个具有多种功能的多亚基复合物,在经典翻译起始中发挥作用,已知其与 40S 和 60S 核糖体蛋白以及翻译延伸因子相互作用,但从未证明其直接参与翻译延伸。我们发现 eIF3 缺乏会降低一组编码与线粒体和膜功能相关蛋白的约 2700 个 mRNA 中密码子 25 到 75 之间的早期核糖体延伸速度,导致其编码蛋白的合成缺陷。为了促进延伸,eIF3 与翻译前 60 个密码子的 80S 核糖体相互作用,并募集蛋白质量控制因子,这些因子是正常线粒体生理学所必需的。因此,eIF3e 小鼠在骨骼肌中积累有缺陷的线粒体,并表现出肌肉力量的进行性下降。因此,eIF3 与 80S 核糖体相互作用,在早期延伸水平上增强具有膜相关功能的蛋白的合成,这一活性对于线粒体生理学和肌肉健康至关重要。

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