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Mitochondrial dynamics and viral infections: A close nexus

机译:线粒体动力学和病毒感染:紧密的联系

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Viruses manipulate cellular machinery and functions to subvert intracellular environment conducive for viral proliferation. They strategically alter functions of the multitasking mitochondria to influence energy production, metabolism, survival, and immune signaling. Mitochondria either occur as heterogeneous population of individual organelles or large interconnected tubular network The mitochondrial network is highly susceptible to physiological and environmental insults, including viral infections, and is dynamically maintained by mitochondrial fission and fusion. Mitochondrial dynamics in tandem with mitochondria-selective autophagy 'mitophagy' coordinates mitochondrial quality control and homeostasis. Mitochondrial dynamics impacts cellular homeostasis, metabolism, and innate-immune signaling, and thus can be major determinant of the outcome of viral infections. Herein, we review how mitochondrial dynamics is affected during viral infections and how this complex interplay benefits the viral infectious process and associated diseases. This article is part of a Special Issue entitled: Mitophagy. (C) 2015 Elsevier B.V. All rights reserved.
机译:病毒操纵细胞机制和功能以破坏有利于病毒增殖的细胞内环境。他们从战略上改变了多任务线粒体的功能,以影响能量产生,代谢,存活和免疫信号传导。线粒体以单个细胞器的异质种群或大型相互连接的管状网络的形式出现。线粒体网络高度易受生理和环境的侵害,包括病毒感染,并通过线粒体的裂变和融合而得到动态维持。线粒体动力学与线粒体选择性自噬“线粒体”串联在一起,可以协调线粒体的质量控制和体内稳态。线粒体动力学影响细胞稳态,代谢和先天免疫信号传导,因此可能是病毒感染结果的主要决定因素。本文中,我们回顾了病毒感染期间线粒体动力学如何受到影响,以及这种复杂的相互作用如何使病毒感染过程和相关疾病受益。本文是名为“线粒体”的特刊的一部分。 (C)2015 Elsevier B.V.保留所有权利。

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