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线粒体新生链质量控制决定细胞器的形态和功能。

Mitochondrial Nascent Chain Quality Control Determines Organelle Form and Function.

机构信息

Institute of Biotechnology , University of Helsinki , Helsinki 00014 , Finland.

出版信息

ACS Chem Biol. 2019 Nov 15;14(11):2396-2405. doi: 10.1021/acschembio.9b00518. Epub 2019 Sep 23.

Abstract

Proteotoxicity has long been considered a key factor in mitochondrial dysfunction and human disease. The origin of the endogenous offending toxic substrates and the regulatory pathways to deal with these insults, however, have remained unclear. Mitochondria maintain a compartmentalized gene expression system that in animals is only responsible for synthesis of 1% of the organelle proteome. Because of the relatively small contribution of the mitochondrial genome to the overall proteome, the synthesis and quality control of these nascent chains to maintain organelle proteostasis has long been overlooked. However, recent research has uncovered mechanisms by which defects to the quality control of mitochondrial gene expression are linked to a novel cellular stress response that impinges upon organelle form and function and cell fitness. In this review, we discuss the mechanisms for a key event in the response: activation of the metalloprotease OMA1. This severs the membrane tether of the dynamin-related GTPase OPA1, which is a critical determinant for mitochondrial morphology and function. We also highlight the evolutionary conservation from bacteria of these quality-control mechanisms to maintain membrane integrity, gene expression, and cell fitness.

摘要

蛋白毒性作用一直被认为是线粒体功能障碍和人类疾病的一个关键因素。然而,内源性毒性攻击底物的起源以及应对这些损伤的调节途径仍不清楚。线粒体维持着一个区室化的基因表达系统,在动物中,该系统仅负责合成细胞器蛋白质组的 1%。由于线粒体基因组对整个蛋白质组的贡献相对较小,因此这些新生链的合成和质量控制对于维持细胞器蛋白质稳态一直被忽视。然而,最近的研究揭示了线粒体基因表达质量控制缺陷与一种新型细胞应激反应之间的联系机制,这种反应会影响细胞器的形态和功能以及细胞适应性。在这篇综述中,我们讨论了该反应中的一个关键事件的机制:金属蛋白酶 OMA1 的激活。该机制切断了与线粒体形态和功能密切相关的 dynamin 相关 GTP 酶 OPA1 的膜结合。我们还强调了这些质量控制机制在细菌中的进化保守性,以维持膜完整性、基因表达和细胞适应性。

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