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通过 cryoEM 揭示鼠巨细胞病毒衣壳中的蛋白相互作用。

Protein interactions in the murine cytomegalovirus capsid revealed by cryoEM.

机构信息

The California NanoSystems Institute (CNSI), University of California, Los Angeles (UCLA), Los Angeles, CA, 90095, USA.

出版信息

Protein Cell. 2013 Nov;4(11):833-45. doi: 10.1007/s13238-013-3060-7. Epub 2013 Sep 4.

Abstract

Cytomegalovirus (CMV) is distinct among members of the Herpesviridae family for having the largest dsDNA genome (230 kb). Packaging of large dsDNA genome is known to give rise to a highly pressurized viral capsid, but molecular interactions conducive to the formation of CMV capsid resistant to pressurization have not been described. Here, we report a cryo electron microscopy (cryoEM) structure of the murine cytomegalovirus (MCMV) capsid at a 9.1 Å resolution and describe the molecular interactions among the ∼3000 protein molecules in the MCMV capsid at the secondary structure level. Secondary structural elements are resolved to provide landmarks for correlating with results from sequence-based prediction and for structure-based homology modeling. The major capsid protein (MCP) upper domain (MCPud) contains α-helices and β-sheets conserved with those in MCPud of herpes simplex virus type 1 (HSV-1), with the largest differences identified as a "saddle loop" region, located at the tip of MCPud and involved in interaction with the smallest capsid protein (SCP). Interactions among the bacteriophage HK97-like floor domain of MCP, the middle domain of MCP, the hook and clamp domains of the triplex proteins (hoop and clamp domains of TRI-1 and clamp domain of TRI-2) contribute to the formation of a mature capsid. These results offer a framework for understanding how cytomegalovirus uses various secondary structural elements of its capsid proteins to build a robust capsid for packaging its large dsDNA genome inside and for attaching unique functional tegument proteins outside.

摘要

巨细胞病毒(CMV)在疱疹病毒科成员中因其具有最大的双链 DNA 基因组(230 kb)而与众不同。众所周知,包装大型双链 DNA 基因组会导致病毒衣壳受到高度压缩,但尚未描述有利于形成对加压具有抗性的 CMV 衣壳的分子相互作用。在这里,我们报告了在 9.1 Å分辨率下的鼠巨细胞病毒(MCMV)衣壳的低温电子显微镜(cryoEM)结构,并描述了在二级结构水平上 MCMV 衣壳中约 3000 个蛋白质分子之间的分子相互作用。二级结构元件得到解决,为与基于序列的预测结果相关联提供了地标,并为基于结构的同源建模提供了地标。主要衣壳蛋白(MCP)上域(MCPud)包含与 1 型单纯疱疹病毒(HSV-1)的 MCPud 中的α-螺旋和β-折叠保守的结构元件,最大的差异被鉴定为位于 MCPud 尖端并与最小衣壳蛋白(SCP)相互作用的“鞍形环”区域。MCP 的噬菌体 HK97 样地板域、MCP 的中间域、三聚体蛋白的钩和夹域(TRI-1 的环和夹域以及 TRI-2 的夹域)之间的相互作用有助于成熟衣壳的形成。这些结果为理解巨细胞病毒如何利用其衣壳蛋白的各种二级结构元件在内部包装其大型双链 DNA 基因组并在外部附着独特的功能被膜蛋白构建坚固的衣壳提供了一个框架。

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