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单纯疱疹病毒编码VP22的基因(UL49)的缺失会改变感染细胞蛋白0(ICP0)的表达、定位及病毒体整合。

Deletion of the herpes simplex virus VP22-encoding gene (UL49) alters the expression, localization, and virion incorporation of ICP0.

作者信息

Elliott Gillian, Hafezi Wali, Whiteley Alison, Bernard Emmanuelle

机构信息

Marie Curie Research Institute, Oxted, Surrey, UK.

出版信息

J Virol. 2005 Aug;79(15):9735-45. doi: 10.1128/JVI.79.15.9735-9745.2005.

Abstract

The role of the herpes simplex virus tegument protein VP22 is not yet known. Here we describe the characterization of a virus in which the entire VP22 open reading frame has been deleted. We show that VP22 is not essential for virus growth but that virus lacking VP22 (Delta22) displays a cell-specific replication defect in epithelial MDBK cells. Virus particles assembled in the absence of VP22 show few obvious differences to wild-type (WT) particles, except for a moderate reduction in glycoproteins gD and gB. In addition, the Delta22 virus exhibits a general delay in the initiation of virus protein synthesis, but this is not due to a glycoprotein-related defect in virus entry. Intriguingly, however, the absence of VP22 has an obvious effect on the intracellular level of the immediate-early (IE) protein ICP0. Moreover, following translocation from the nucleus to the cytoplasm, ICP0 is unable to localize to the characteristic cytoplasmic sites observed in a WT infection. We demonstrate that, in WT-infected cells, VP22 and ICP0 are concentrated in the same cytoplasmic sites. Furthermore, we show that, while ICP0 and ICP4 are components of WT extracellular virions, the altered localization of ICP0 in the cytoplasm of Delta22-infected cells correlates with an absence of both ICP0 and ICP4 from Delta22 virions. Hence, while a role has not yet been defined for virion IE proteins in virus infection, our results suggest that their incorporation is a specific event requiring the tegument protein VP22. This report provides the first direct evidence that VP22 influences virus assembly.

摘要

单纯疱疹病毒被膜蛋白VP22的作用尚不清楚。在此,我们描述了一种病毒的特性,该病毒的整个VP22开放阅读框已被删除。我们发现VP22对病毒生长并非必不可少,但缺乏VP22的病毒(Δ22)在上皮MDBK细胞中表现出细胞特异性复制缺陷。在没有VP22的情况下组装的病毒颗粒与野生型(WT)颗粒相比,除了糖蛋白gD和gB略有减少外,几乎没有明显差异。此外,Δ22病毒在病毒蛋白合成起始方面普遍延迟,但这并非由于病毒进入过程中与糖蛋白相关的缺陷。然而,有趣的是,VP22的缺失对立即早期(IE)蛋白ICP0的细胞内水平有明显影响。此外,从细胞核转运到细胞质后,ICP0无法定位到WT感染中观察到的特征性细胞质位点。我们证明,在WT感染的细胞中,VP22和ICP0集中在相同的细胞质位点。此外,我们表明,虽然ICP0和ICP4是WT细胞外病毒粒子的成分,但ICP0在Δ22感染细胞细胞质中的定位改变与Δ22病毒粒子中ICP0和ICP4的缺失相关。因此,虽然病毒粒子IE蛋白在病毒感染中的作用尚未明确,但我们的结果表明它们的掺入是一个需要被膜蛋白VP22的特定事件。本报告提供了VP22影响病毒组装的首个直接证据。

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