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宿主-病原体界面的 SUMOylation。

Sumoylation at the host-pathogen interface.

机构信息

Department of Microbial & Molecular Pathogenesis, College of Medicine, Texas A&M Health Science Center, 8447 HWY 47, Bryan, TX 77807-1359.

出版信息

Biomolecules. 2012 Apr 5;2(2):203-27. doi: 10.3390/biom2020203.

Abstract

Many viral proteins have been shown to be sumoylated with corresponding regulatory effects on their protein function, indicating that this host cell modification process is widely exploited by viral pathogens to control viral activity. In addition to using sumoylation to regulate their own proteins, several viral pathogens have been shown to modulate overall host sumoylation levels. Given the large number of cellular targets for SUMO addition and the breadth of critical cellular processes that are regulated via sumoylation, viral modulation of overall sumoylation presumably alters the cellular environment to ensure that it is favorable for viral reproduction and/or persistence. Like some viruses, certain bacterial plant pathogens also target the sumoylation system, usually decreasing sumoylation to disrupt host anti-pathogen responses. The recent demonstration that Listeria monocytogenes also disrupts host sumoylation, and that this is required for efficient infection, extends the plant pathogen observations to a human pathogen and suggests that pathogen modulation of host sumoylation may be more widespread than previously appreciated. This review will focus on recent aspects of how pathogens modulate the host sumoylation system and how this benefits the pathogen.

摘要

许多病毒蛋白已被证明可被 SUMO 化,这对其蛋白功能具有相应的调节作用,表明宿主细胞的这一修饰过程被病毒病原体广泛利用,以控制病毒的活性。除了利用 SUMO 化来调节自身蛋白外,几种病毒病原体已被证明可以调节宿主整体 SUMO 化水平。鉴于 SUMO 添加的细胞靶标众多,以及通过 SUMO 化调节的关键细胞过程广泛,病毒对整体 SUMO 化的调节可能会改变细胞环境,以确保其有利于病毒的繁殖和/或持续存在。与某些病毒一样,某些细菌植物病原体也以 SUMO 化系统为靶向,通常通过降低 SUMO 化来破坏宿主的抗病原体反应。最近的研究表明,李斯特菌(Listeria monocytogenes)也会破坏宿主的 SUMO 化,而这对于有效的感染是必需的,这将植物病原体的观察结果扩展到人类病原体,并表明病原体对宿主 SUMO 化的调节可能比以前认为的更为广泛。本综述将重点介绍病原体调节宿主 SUMO 化系统的最新方面,以及这对病原体的益处。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5c5a/4030842/065ab39cf9df/biomolecules-02-00203-g001.jpg

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