Mitochondrial protein import as a quality control sensor

IF 2.4 4区 生物学 Q4 CELL BIOLOGY Biology of the Cell Pub Date : 2021-04-18 DOI:10.1111/boc.202100002
Sebabrata Maity, Oishee Chakrabarti
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引用次数: 5

Abstract

Mitochondria are organelles involved in various functions related to cellular metabolism and homoeostasis. Though mitochondria contain own genome, their nuclear counterparts encode most of the different mitochondrial proteins. These are synthesised as precursors in the cytosol and have to be delivered into the mitochondria. These organelles hence have elaborate machineries for the import of precursor proteins from cytosol. The protein import machineries present in both mitochondrial membrane and aqueous compartments show great variability in pre-protein recognition, translocation and sorting across or into it. Mitochondrial protein import machineries also interact transiently with other protein complexes of the respiratory chain or those involved in the maintenance of membrane architecture. Hence mitochondrial protein translocation is an indispensable part of the regulatory network that maintains protein biogenesis, bioenergetics, membrane dynamics and quality control of the organelle. Various stress conditions and diseases that are associated with mitochondrial import defects lead to changes in cellular transcriptomic and proteomic profiles. Dysfunction in mitochondrial protein import also causes over-accumulation of precursor proteins and their aggregation in the cytosol. Multiple pathways may be activated for buffering these harmful consequences. Here, we present a comprehensive picture of import machinery and its role in cellular quality control in response to defective mitochondrial import. We also discuss the pathological consequences of dysfunctional mitochondrial protein import in neurodegeneration and cancer.

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线粒体蛋白进口作为质量控制传感器
线粒体是参与与细胞代谢和体内平衡有关的各种功能的细胞器。虽然线粒体包含自己的基因组,但它们的核对应体编码了大多数不同的线粒体蛋白质。它们在细胞质中被合成为前体,必须被运送到线粒体中。因此,这些细胞器具有从细胞质中输入前体蛋白的精密机制。存在于线粒体膜和水室中的蛋白质输入机制在蛋白质前识别、易位和分选方面表现出很大的变异性。线粒体蛋白质输入机制也与呼吸链的其他蛋白质复合物或参与维持膜结构的蛋白质复合物短暂地相互作用。因此,线粒体蛋白质易位是维持蛋白质生物发生、生物能量学、膜动力学和细胞器质量控制的调节网络中不可或缺的一部分。与线粒体输入缺陷相关的各种应激条件和疾病导致细胞转录组学和蛋白质组学谱的变化。线粒体蛋白输入功能障碍也会导致前体蛋白的过度积累及其在细胞质中的聚集。为了缓冲这些有害的后果,可能会激活多种途径。在这里,我们提出了一个全面的图片的进口机械和其在细胞质量控制中的作用,以应对线粒体进口缺陷。我们还讨论了线粒体蛋白输入功能障碍在神经变性和癌症中的病理后果。
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来源期刊
Biology of the Cell
Biology of the Cell 生物-细胞生物学
CiteScore
5.30
自引率
0.00%
发文量
53
审稿时长
>12 weeks
期刊介绍: The journal publishes original research articles and reviews on all aspects of cellular, molecular and structural biology, developmental biology, cell physiology and evolution. It will publish articles or reviews contributing to the understanding of the elementary biochemical and biophysical principles of live matter organization from the molecular, cellular and tissues scales and organisms. This includes contributions directed towards understanding biochemical and biophysical mechanisms, structure-function relationships with respect to basic cell and tissue functions, development, development/evolution relationship, morphogenesis, stem cell biology, cell biology of disease, plant cell biology, as well as contributions directed toward understanding integrated processes at the organelles, cell and tissue levels. Contributions using approaches such as high resolution imaging, live imaging, quantitative cell biology and integrated biology; as well as those using innovative genetic and epigenetic technologies, ex-vivo tissue engineering, cellular, tissue and integrated functional analysis, and quantitative biology and modeling to demonstrate original biological principles are encouraged.
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CRCI2NA inaugural symposium: A meeting on tumor and immune ecosystems. Issue Information N-terminal targeting sequences and coding sequences act in concert to determine the localization and trafficking pathway of apicoplast proteins in Toxoplasma gondii. Issue Information Issue Information
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