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在无细胞系统中鉴定丙型肝炎病毒核心蛋白中对衣壳组装至关重要的残基。

Identification of residues in the hepatitis C virus core protein that are critical for capsid assembly in a cell-free system.

作者信息

Klein Kevin C, Dellos Sheri R, Lingappa Jaisri R

机构信息

Department of Pathobiology, Box 357238, University of Washington, 1959 NE Pacific St., Seattle, WA 98195, USA.

出版信息

J Virol. 2005 Jun;79(11):6814-26. doi: 10.1128/JVI.79.11.6814-6826.2005.

Abstract

Significant advances have been made in understanding hepatitis C virus (HCV) replication through development of replicon systems. However, neither replicon systems nor standard cell culture systems support significant assembly of HCV capsids, leaving a large gap in our knowledge of HCV virion formation. Recently, we established a cell-free system in which over 60% of full-length HCV core protein synthesized de novo in cell extracts assembles into HCV capsids by biochemical and morphological criteria. Here we used mutational analysis to identify residues in HCV core that are important for capsid assembly in this highly reproducible cell-free system. We found that basic residues present in two clusters within the N-terminal 68 amino acids of HCV core played a critical role, while the uncharged linker domain between them was not. Furthermore, the aspartate at position 111, the region spanning amino acids 82 to 102, and three serines that are thought to be sites of phosphorylation do not appear to be critical for HCV capsid formation in this system. Mutation of prolines important for targeting of core to lipid droplets also failed to alter HCV capsid assembly in the cell-free system. In addition, wild-type HCV core did not rescue assembly-defective mutants. These data constitute the first systematic and quantitative analysis of the roles of specific residues and domains of HCV core in capsid formation.

摘要

通过复制子系统的开发,在理解丙型肝炎病毒(HCV)复制方面取得了重大进展。然而,复制子系统和标准细胞培养系统均不支持HCV衣壳的大量组装,这使得我们对HCV病毒粒子形成的认识存在很大差距。最近,我们建立了一种无细胞系统,根据生化和形态学标准,在该系统中,细胞提取物中从头合成的全长HCV核心蛋白超过60%组装成HCV衣壳。在此,我们使用突变分析来鉴定HCV核心中对这种高度可重复的无细胞系统中的衣壳组装至关重要的残基。我们发现,HCV核心N端68个氨基酸内两个簇中的碱性残基起关键作用,而它们之间的不带电荷的连接域则不然。此外,第111位的天冬氨酸、82至102位氨基酸区域以及被认为是磷酸化位点的三个丝氨酸在该系统中似乎对HCV衣壳形成并不关键。对核心靶向脂滴很重要的脯氨酸突变也未能改变无细胞系统中的HCV衣壳组装。此外,野生型HCV核心不能挽救组装缺陷型突变体。这些数据构成了对HCV核心特定残基和结构域在衣壳形成中作用的首次系统和定量分析。

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