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共翻译[X]次

Co-Translational Quality Control Induced by Translational Arrest.

机构信息

Division of RNA and Gene regulation, Institute of Medical Science, The University of Tokyo, Tokyo 108-8639, Japan.

出版信息

Biomolecules. 2023 Feb 7;13(2):317. doi: 10.3390/biom13020317.

Abstract

Genetic mutations, mRNA processing errors, and lack of availability of charged tRNAs sometimes slow down or completely stall translating ribosomes. Since an incomplete nascent chain derived from stalled ribosomes may function anomalously, such as by forming toxic aggregates, surveillance systems monitor every step of translation and dispose of such products to prevent their accumulation. Over the past decade, yeast models with powerful genetics and biochemical techniques have contributed to uncovering the mechanism of the co-translational quality control system, which eliminates the harmful products generated from aberrant translation. We here summarize the current knowledge of the molecular mechanism of the co-translational quality control systems in yeast, which eliminate the incomplete nascent chain, improper mRNAs, and faulty ribosomes to maintain cellular protein homeostasis.

摘要

遗传突变、mRNA 加工错误和带电荷的 tRNA 缺乏有时会减缓或完全阻止翻译核糖体。由于来自停滞核糖体的不完全新生链可能异常发挥功能,例如形成毒性聚集体,因此监控系统会监测翻译的每一步,并处理这些产物以防止其积累。在过去的十年中,具有强大遗传学和生化技术的酵母模型有助于揭示共翻译质量控制系统的机制,该系统消除了异常翻译产生的有害产物。在这里,我们总结了酵母中共翻译质量控制系统的分子机制的最新知识,该系统消除了不完整的新生链、不正确的 mRNA 和有缺陷的核糖体,以维持细胞蛋白质的内稳态。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dab0/9953336/a1eac8fc8e91/biomolecules-13-00317-g001.jpg

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