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线粒体生物发生中的蛋白质导入:由靶向信号引导并由特定伴侣蛋白维持。

Protein import in mitochondria biogenesis: guided by targeting signals and sustained by dedicated chaperones.

作者信息

Dimogkioka Anna-Roza, Lees Jamie, Lacko Erik, Tokatlidis Kostas

机构信息

Institute of Molecular Cell and Systems Biology, College of Medical, Veterinary and Life Sciences, University of Glasgow University Avenue Glasgow G12 8QQ Scotland UK

出版信息

RSC Adv. 2021 Oct 1;11(51):32476-32493. doi: 10.1039/d1ra04497d. eCollection 2021 Sep 27.

Abstract

Mitochondria have a central role in cellular metabolism; they are responsible for the biosynthesis of amino acids, lipids, iron-sulphur clusters and regulate apoptosis. About 99% of mitochondrial proteins are encoded by nuclear genes, so the biogenesis of mitochondria heavily depends on protein import pathways into the organelle. An intricate system of well-studied import machinery facilitates the import of mitochondrial proteins. In addition, folding of the newly synthesized proteins takes place in a busy environment. A system of folding helper proteins, molecular chaperones and co-chaperones, are present to maintain proper conformation and thus avoid protein aggregation and premature damage. The components of the import machinery are well characterised, but the targeting signals and how they are recognised and decoded remains in some cases unclear. Here we provide some detail on the types of targeting signals involved in the protein import process. Furthermore, we discuss the very elaborate chaperone systems of the intermembrane space that are needed to overcome the particular challenges for the folding process in this compartment. The mechanisms that sustain productive folding in the face of aggregation and damage in mitochondria are critical components of the stress response and play an important role in cell homeostasis.

摘要

线粒体在细胞代谢中起着核心作用;它们负责氨基酸、脂质、铁硫簇的生物合成,并调节细胞凋亡。约99%的线粒体蛋白由核基因编码,因此线粒体的生物发生在很大程度上依赖于蛋白质导入该细胞器的途径。一个经过充分研究的复杂导入机制系统促进了线粒体蛋白的导入。此外,新合成蛋白质的折叠发生在一个繁忙的环境中。存在一个由折叠辅助蛋白、分子伴侣和共伴侣组成的系统,以维持正确的构象,从而避免蛋白质聚集和过早受损。导入机制的组成部分已得到充分表征,但在某些情况下,靶向信号以及它们如何被识别和解码仍不清楚。在这里,我们详细介绍了蛋白质导入过程中涉及的靶向信号类型。此外,我们讨论了线粒体外膜间隙中非常精细的伴侣系统,这些系统是克服该隔室中折叠过程所面临的特殊挑战所必需的。面对线粒体中的聚集和损伤仍能维持有效折叠的机制是应激反应的关键组成部分,在细胞内稳态中发挥重要作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8e4e/9041937/23d052a5278f/d1ra04497d-f1.jpg

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