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单纯疱疹病毒1型ICP0在转染病毒DNA后传染性病毒的从头合成中起关键作用。

Herpes simplex virus type 1 ICP0 plays a critical role in the de novo synthesis of infectious virus following transfection of viral DNA.

作者信息

Cai W Z, Schaffer P A

机构信息

Laboratory of Tumor Virus Genetics, Dana-Farber Cancer Institute, Boston, Massachusetts.

出版信息

J Virol. 1989 Nov;63(11):4579-89. doi: 10.1128/JVI.63.11.4579-4589.1989.

Abstract

As a first step in identifying the functions and intramolecular functional domains of herpes simplex virus type 1 infected cell protein 0 (ICP0) in productive infection and latency, a series of mutant plasmids specifying varying amounts of the ICP0 primary amino acid sequence were constructed. In transient expression assays with mutant and wild-type plasmids, the N-terminal half of the ICP0 molecule was found to be sufficient to transactivate a variety of viral promoters. Although promoters representing the immediate-early, early, and late kinetic classes were transactivated by wild-type ICP0, individual promoters responded to mutant forms of ICP0 in a manner consistent with the possibility that ICP0 transactivates different promoters by different mechanisms. Unlike infection with virus particles, which contain the 65-kilodalton transcriptional transactiovator, the initiation of viral replication after transfection of cells with purified viral DNA requires de novo protein synthesis. In order to assess the role of ICP0 in the de novo synthesis of infectious virus, Vero cells were transfected with purified DNA of wild-type virus or an ICP0 null mutant and the production of infectious virus was monitored. In cells transfected with mutant DNA, virus production was delayed by 2 days and the level of virus was reduced by several orders of magnitude relative to Vero cells transfected with wild-type viral DNA, suggesting an important role for ICP0 in the de novo synthesis of infectious particles. In cotransfection experiments with infectious DNA of the ICP0 null mutant and a plasmid specifying wild-type ICP0 titers of infectious virus were significantly enhanced relative to transfection with mutant DNA alone, confirming the role of ICP0 in de novo synthesis. These findings are consistent with the proposed role of ICP0 in reactivation of herpes simplex virus from latency (D. A. Leib, D. M. Coen, C. L. Bogard, K. A. Hicks, D. R. Yager, D. M. Knipe, K. L. Tyler, and P. A. Schaffer, J. Virol. 63:759-768, 1989), a process also thought to require de novo protein synthesis. The complementing activities of ICP0 mutant plasmids for ICP0 null mutant DNA in cotransfection assays correlated well with their transactivating activities for viral promoters in transient assays, indicating that the transactivating function of ICP0 is a critical factor in the de novo synthesis of infectious particles.(ABSTRACT TRUNCATED AT 400 WORDS)

摘要

作为确定单纯疱疹病毒1型感染细胞蛋白0(ICP0)在 productive感染和潜伏中的功能及分子内功能结构域的第一步,构建了一系列指定不同数量ICP0一级氨基酸序列的突变体质粒。在对突变体和野生型质粒进行的瞬时表达试验中,发现ICP0分子的N端一半足以反式激活多种病毒启动子。虽然代表即刻早期、早期和晚期动力学类别的启动子都被野生型ICP0反式激活,但各个启动子对ICP0突变形式的反应方式表明,ICP0可能通过不同机制反式激活不同的启动子。与含有65千道尔顿转录反式激活因子的病毒颗粒感染不同,用纯化的病毒DNA转染细胞后病毒复制的起始需要从头合成蛋白质。为了评估ICP0在传染性病毒从头合成中的作用,用野生型病毒或ICP0缺失突变体的纯化DNA转染Vero细胞,并监测传染性病毒的产生。在用突变DNA转染的细胞中,病毒产生延迟了2天,并且相对于用野生型病毒DNA转染的Vero细胞,病毒水平降低了几个数量级,这表明ICP0在传染性颗粒的从头合成中起重要作用。在ICP0缺失突变体的传染性DNA与指定野生型ICP0的质粒的共转染实验中,相对于单独用突变DNA转染,传染性病毒的滴度显著提高,证实了ICP0在从头合成中的作用。这些发现与ICP0在单纯疱疹病毒从潜伏状态重新激活中的假定作用一致(D.A.Leib、D.M.Coen、C.L.Bogard、K.A.Hicks、D.R.Yager、D.M.Knipe、K.L.Tyler和P.A.Schaffer,《病毒学杂志》63:759 - 768,1989),这一过程也被认为需要从头合成蛋白质。在共转染试验中,ICP0突变体质粒对ICP0缺失突变体DNA的互补活性与其在瞬时试验中对病毒启动子的反式激活活性密切相关,表明ICP0的反式激活功能是传染性颗粒从头合成中的关键因素。(摘要截短至400字)

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4e74/251091/d12c2f0ceb36/jvirol00078-0120-a.jpg

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