首页> 美国卫生研究院文献>Journal of Virology >A Domain in the Herpes Simplex Virus 1 Triplex Protein VP23 Is Essential for Closure of Capsid Shells into Icosahedral Structures
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A Domain in the Herpes Simplex Virus 1 Triplex Protein VP23 Is Essential for Closure of Capsid Shells into Icosahedral Structures

机译:单纯疱疹病毒1三联体蛋白VP23中的域对于衣壳封闭成二十面体结构必不可少

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摘要

VP23 is a key component of the triplex structure. The triplex, which is unique to herpesviruses, is a complex of three proteins, two molecules of VP23 which interact with a single molecule of VP19C. This structure is important for shell accretion and stability of the protein coat. Previous studies utilized a random transposition mutagenesis approach to identify functional domains of the triplex proteins. In this study, we expand on those findings to determine the key amino acids of VP23 that are required for triplex formation. Using alanine-scanning mutagenesis, we have made mutations in 79 of 318 residues of the VP23 polypeptide. These mutations were screened for function both in the yeast two-hybrid assay for interaction with VP19C and in a genetic complementation assay for the ability to support the replication of a VP23 null mutant virus. These assays identified a number of amino acids that, when altered, abolish VP23 function. Abrogation of virus assembly by a single-amino-acid change bodes well for future development of small-molecule inhibitors of this process. In addition, a number of mutations which localized to a C-terminal region of VP23 (amino acids 205 to 241) were still able to interact with VP19C but were lethal for virus replication when introduced into the herpes simplex virus 1 (HSV-1) KOS genome. The phenotype of many of these mutant viruses was the accumulation of large open capsid shells. This is the first demonstration of capsid shell accumulation in the presence of a lethal VP23 mutation. These data thus identify a new domain of VP23 that is required for or regulates capsid shell closure during virus assembly.
机译:VP23是三层结构的关键组件。疱疹病毒特有的三链体是三种蛋白质的复合物,即两个分子的VP23与单个分子的VP19C相互作用。该结构对于壳的积聚和蛋白外壳的稳定性很重要。先前的研究利用随机转座诱变方法来鉴定三链体蛋白的功能域。在这项研究中,我们扩展了这些发现,以确定三链体形成所需的VP23关键氨基酸。使用丙氨酸扫描诱变,我们在VP23多肽的318个残基中的79个发生了突变。在酵母双杂交试验中与VP19C相互作用和遗传互补试验中支持VP23无效突变病毒复制的能力中,对这些突变的功能进行了筛选。这些测定法鉴定了许多氨基酸,这些氨基酸在改变后会废除VP23功能。通过单氨基酸改变来废除病毒装配预示着该过程的小分子抑制剂的未来发展。此外,定位于VP23的C端区域(氨基酸205至241)的许多突变仍然能够与VP19C相互作用,但是当被引入单纯疱疹病毒1(HSV-1)时,对于病毒复制是致命的。 KOS基因组。许多这些突变病毒的表型是大的开放衣壳壳的积累。这是在致命的VP23突变存在下衣壳壳积累的第一个证明。因此,这些数据确定了病毒组装过程中衣壳外壳封闭所必需或调节的VP23的新域。

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