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细胞WW结构域蛋白调控番茄丛矮病毒复制的新机制。

Novel mechanism of regulation of tomato bushy stunt virus replication by cellular WW-domain proteins.

作者信息

Barajas Daniel, Kovalev Nikolay, Qin Jun, Nagy Peter D

机构信息

Department of Plant Pathology, University of Kentucky, Lexington, Kentucky, USA.

Department of Plant Pathology, University of Kentucky, Lexington, Kentucky, USA College of Life Science, Northwest A&F University, Yangling, Shaanxi, People's Republic of China.

出版信息

J Virol. 2015 Feb;89(4):2064-79. doi: 10.1128/JVI.02719-14. Epub 2014 Dec 3.

Abstract

UNLABELLED

Replication of (+)RNA viruses depends on several co-opted host proteins but is also under the control of cell-intrinsic restriction factors (CIRFs). By using tombusviruses, small model viruses of plants, we dissect the mechanism of inhibition of viral replication by cellular WW-domain-containing proteins, which act as CIRFs. By using fusion proteins between the WW domain and the p33 replication protein, we show that the WW domain inhibits the ability of p33 to bind to the viral RNA and to other p33 and p92 replication proteins leading to inhibition of viral replication in yeast and in a cell extract. Overexpression of WW-domain protein in yeast also leads to reduction of several co-opted host factors in the viral replicase complex (VRC). These host proteins, such as eEF1A, Cdc34 E2 ubiquitin-conjugating enzyme, and ESCRT proteins (Bro1p and Vps4p), are known to be involved in VRC assembly. Simultaneous coexpression of proviral cellular factors with WW-domain protein partly neutralizes the inhibitory effect of the WW-domain protein. We propose that cellular WW-domain proteins act as CIRFs and also as regulators of tombusvirus replication by inhibiting the assembly of new membrane-bound VRCs at the late stage of infection. We suggest that tombusviruses could sense the status of the infected cells via the availability of cellular susceptibility factors versus WW-domain proteins for binding to p33 replication protein that ultimately controls the formation of new VRCs. This regulatory mechanism might explain how tombusviruses could adjust the efficiency of RNA replication to the limiting resources of the host cells during infections.

IMPORTANCE

Replication of positive-stranded RNA viruses, which are major pathogens of plants, animals, and humans, is inhibited by several cell-intrinsic restriction factors (CIRFs) in infected cells. We define here the inhibitory roles of the cellular Rsp5 ubiquitin ligase and its WW domain in plant-infecting tombusvirus replication in yeast cells and in vitro using purified components. The WW domain of Rsp5 binds to the viral RNA-binding sites of p33 and p92 replication proteins and blocks the ability of these viral proteins to use the viral RNA for replication. The WW domain also interferes with the interaction (oligomerization) of p33 and p92 that is needed for the assembly of the viral replicase. Moreover, WW domain also inhibits the subversion of several cellular proteins into the viral replicase, which otherwise play proviral roles in replication. Altogether, Rsp5 is a CIRF against a tombusvirus, and it possibly has a regulatory function during viral replication in infected cells.

摘要

未标记

(+)RNA病毒的复制依赖于几种被征用的宿主蛋白,但也受细胞内在限制因子(CIRF)的控制。通过使用植物的小型模型病毒番茄丛矮病毒,我们剖析了含WW结构域的细胞蛋白作为CIRF抑制病毒复制的机制。通过使用WW结构域与p33复制蛋白之间的融合蛋白,我们表明WW结构域抑制p33与病毒RNA以及其他p33和p92复制蛋白结合的能力,从而导致酵母和细胞提取物中病毒复制受到抑制。酵母中WW结构域蛋白的过表达也导致病毒复制酶复合物(VRC)中几种被征用的宿主因子减少。这些宿主蛋白,如eEF1A、Cdc34 E2泛素结合酶和ESCRT蛋白(Bro1p和Vps4p),已知参与VRC组装。病毒细胞因子与WW结构域蛋白同时共表达可部分抵消WW结构域蛋白的抑制作用。我们提出细胞WW结构域蛋白作为CIRF,并且通过在感染后期抑制新的膜结合VRC的组装,也作为番茄丛矮病毒复制的调节因子。我们认为番茄丛矮病毒可以通过细胞易感因子与WW结构域蛋白与p33复制蛋白结合的可用性来感知受感染细胞的状态,这最终控制新VRC的形成。这种调节机制可能解释了番茄丛矮病毒在感染期间如何将RNA复制效率调整为宿主细胞的有限资源。

重要性

正链RNA病毒是植物、动物和人类的主要病原体,其复制在受感染细胞中受到几种细胞内在限制因子(CIRF)的抑制。我们在此定义了细胞Rsp5泛素连接酶及其WW结构域在酵母细胞和体外使用纯化成分对感染植物的番茄丛矮病毒复制中的抑制作用。Rsp5的WW结构域与p33和p92复制蛋白的病毒RNA结合位点结合,并阻断这些病毒蛋白利用病毒RNA进行复制的能力。WW结构域还干扰p33和p92的相互作用(寡聚化),这是病毒复制酶组装所必需的。此外WW结构域还抑制几种细胞蛋白被颠覆进入病毒复制酶,否则这些蛋白在复制中起病毒促进作用。总之,Rsp5是针对番茄丛矮病毒的CIRF,并且它在受感染细胞的病毒复制过程中可能具有调节功能。

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