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ICP0 Dismantles Microtubule Networks in Herpes Simplex Virus-Infected Cells

机译:ICP0拆除单纯疱疹病毒感染细胞中的微管网络

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Infected-cell protein 0 (ICP0) is a RING finger E3 ligase that regulates herpes simplex virus (HSV) mRNA synthesis, and strongly influences the balance between latency and replication of HSV. For 25 years, the nuclear functions of ICP0 have been the subject of intense scrutiny. To obtain new clues about ICP0's mechanism of action, we constructed HSV-1 viruses that expressed GFP-tagged ICP0. To our surprise, both GFP-tagged and wild-type ICP0 were predominantly observed in the cytoplasm of HSV-infected cells. Although ICP0 is exclusively nuclear during the immediate-early phase of HSV infection, further analysis revealed that ICP0 translocated to the cytoplasm during the early phase where it triggered a previously unrecognized process; ICP0 dismantled the microtubule network of the host cell. A RING finger mutant of ICP0 efficiently bundled microtubules, but failed to disperse microtubule bundles. Synthesis of ICP0 proved to be necessary and sufficient to disrupt microtubule networks in HSV-infected and transfected cells. Plant and animal viruses encode many proteins that reorganize microtubules. However, this is the first report of a viral E3 ligase that regulates microtubule stability. Intriguingly, several cellular E3 ligases orchestrate microtubule disassembly and reassembly during mitosis. Our results suggest that ICP0 serves a dual role in the HSV life cycle, acting first as a nuclear regulator of viral mRNA synthesis and acting later, in the cytoplasm, to dismantle the host cell's microtubule network in preparation for virion synthesis and/or egress.
机译:感染细胞蛋白0(ICP0)是一种无名指E3连接酶,可调节单纯疱疹病毒(HSV)mRNA的合成,并强烈影响HSV潜伏期和复制之间的平衡。 25年来,ICP0的核功能一直受到严格审查。为了获得有关ICP0作用机理的新线索,我们构建了表达GFP标签的ICP0的HSV-1病毒。令我们惊讶的是,在HSV感染细胞的细胞质中主要观察到了GFP标记的ICP0和野生型ICP0。尽管ICP0在HSV感染的早期阶段仅是核的,但进一步的分析表明ICP0在早期阶段转移到了细胞质,从而触发了以前无法识别的过程。 ICP0拆除了宿主细胞的微管网络。 ICP0的RING指突变体有效地捆绑了微管,但未能分散微管束。证明ICP0的合成是必要的,并且足以破坏HSV感染和转染细胞中的微管网络。动植物病毒编码许多重组微管的蛋白质。但是,这是调节微管稳定性的病毒E3连接酶的首次报道。有趣的是,在有丝分裂过程中,几种细胞E3连接酶可调控微管的拆卸和重新组装。我们的结果表明,ICP0在HSV生命周期中起着双重作用,首先充当病毒mRNA合成的核调节剂,然后在细胞质中发挥作用,以拆除宿主细胞的微管网络,为病毒体合成和/或出口做准备。

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