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呼吸道合胞病毒利用宿主线粒体功能促进感染性病毒的产生。

Respiratory syncytial virus co-opts host mitochondrial function to favour infectious virus production.

机构信息

Department of Biochemistry and Molecular Biology, University of Melbourne, Melbourne, Australia.

Department of Biochemistry and Molecular Biology, Monash University, Melbourne, Australia.

出版信息

Elife. 2019 Jun 27;8:e42448. doi: 10.7554/eLife.42448.

Abstract

Although respiratory syncytial virus (RSV) is responsible for more human deaths each year than influenza, its pathogenic mechanisms are poorly understood. Here high-resolution quantitative imaging, bioenergetics measurements and mitochondrial membrane potential- and redox-sensitive dyes are used to define RSV's impact on host mitochondria for the first time, delineating RSV-induced microtubule/dynein-dependent mitochondrial perinuclear clustering, and translocation towards the microtubule-organizing centre. These changes are concomitant with impaired mitochondrial respiration, loss of mitochondrial membrane potential and increased production of mitochondrial reactive oxygen species (ROS). Strikingly, agents that target microtubule integrity the dynein motor protein, or inhibit mitochondrial ROS production strongly suppresses RSV virus production, including in a mouse model with concomitantly reduced virus-induced lung inflammation. The results establish RSV's unique ability to co-opt host cell mitochondria to facilitate viral infection, revealing the RSV-mitochondrial interface for the first time as a viable target for therapeutic intervention.

摘要

虽然呼吸道合胞病毒(RSV)每年导致的人类死亡人数超过流感,但人们对其发病机制仍知之甚少。本研究首次采用高分辨率定量成像、生物能量测量和线粒体膜电位及氧化还原敏感染料,来定义 RSV 对宿主线粒体的影响,阐明 RSV 诱导的微管/动力蛋白依赖性线粒体核周聚集,并向微管组织中心转移。这些变化伴随着线粒体呼吸受损、线粒体膜电位丧失和线粒体活性氧(ROS)产生增加。引人注目的是,靶向微管完整性的试剂、动力蛋白或抑制线粒体 ROS 产生可强烈抑制 RSV 病毒的产生,包括在同时降低病毒诱导的肺部炎症的小鼠模型中也是如此。这些结果确立了 RSV 独特的劫持宿主细胞线粒体以促进病毒感染的能力,首次揭示 RSV-线粒体界面是治疗干预的一个可行靶点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a557/6598784/dd09c98f955a/elife-42448-fig1.jpg

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