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丙型肝炎病毒JFH1株聚合酶的结构与功能分析

Structural and functional analysis of hepatitis C virus strain JFH1 polymerase.

作者信息

Simister Philip, Schmitt Melanie, Geitmann Matthis, Wicht Oliver, Danielson U Helena, Klein Rahel, Bressanelli Stéphane, Lohmann Volker

机构信息

Virologie Moléculaire et Structurale UMR CNRS 2472-INRA 1157, 91198 Gif-sur-Yvette Cedex, France.

出版信息

J Virol. 2009 Nov;83(22):11926-39. doi: 10.1128/JVI.01008-09. Epub 2009 Sep 9.

Abstract

The hepatitis C virus (HCV) isolate JFH1 represents the only cloned wild-type sequence capable of efficient replication in cell culture, as well as in chimpanzees. Previous reports have pointed to the viral polymerase NS5B as a major determinant for efficient replication of this isolate. To understand the underlying mechanisms, we expressed and purified NS5B of JFH1 and of the closely related isolate J6, which replicates below the limit of detection in cell culture. The JFH1 enzyme exhibited a 5- to 10-fold-higher specific activity in vitro, consistent with the polymerase activity itself contributing to efficient replication of JFH1. The higher in vitro activity of the JFH1 enzyme was not due to increased RNA binding, elongation rate, or processivity of the polymerase but to higher initiation efficiency. By using homopolymeric and heteropolymeric templates, we found that purified JFH1 NS5B was significantly more efficient in de novo initiation of RNA synthesis than the J6 counterpart, particularly at low GTP concentrations, probably representing an important prerequisite for the rapid replication kinetics of JFH1. Furthermore, we solved the crystal structure of JFH1 NS5B, which displays a very closed conformation that is expected to facilitate de novo initiation. Structural analysis shows that this closed conformation is stabilized by a sprinkle of substitutions that together promote extra hydrophobic interactions between the subdomains "thumb" and "fingers." These analyses provide deeper insights into the initiation of HCV RNA synthesis and might help to establish more efficient cell culture models for HCV using alternative isolates.

摘要

丙型肝炎病毒(HCV)分离株JFH1是唯一能够在细胞培养以及黑猩猩体内高效复制的克隆野生型序列。先前的报道指出,病毒聚合酶NS5B是该分离株高效复制的主要决定因素。为了解其潜在机制,我们表达并纯化了JFH1以及密切相关的分离株J6的NS5B,J6在细胞培养中的复制低于检测限。JFH1酶在体外表现出高5至10倍的比活性,这与聚合酶活性本身有助于JFH1的高效复制一致。JFH1酶较高的体外活性并非由于RNA结合增加、延伸速率或聚合酶的持续合成能力提高,而是由于起始效率更高。通过使用同聚物和杂聚物模板,我们发现纯化的JFH1 NS5B在RNA合成的从头起始方面比J6对应物显著更高效,特别是在低GTP浓度下,这可能是JFH1快速复制动力学的重要先决条件。此外,我们解析了JFH1 NS5B的晶体结构,其呈现出一种非常封闭的构象,预计有助于从头起始。结构分析表明,这种封闭构象通过一系列取代得以稳定,这些取代共同促进了“拇指”和“手指”亚结构域之间额外的疏水相互作用。这些分析为HCV RNA合成的起始提供了更深入的见解,并可能有助于使用替代分离株建立更高效的HCV细胞培养模型。

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