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丙型肝炎病毒 NS4A 的酸性结构域有助于 RNA 复制和病毒颗粒组装。

The acidic domain of hepatitis C virus NS4A contributes to RNA replication and virus particle assembly.

机构信息

Section of Microbial Pathogenesis, Yale University School of Medicine, 354C BCMM, 295 Congress Ave., New Haven, CT 06536, USA.

出版信息

J Virol. 2011 Feb;85(3):1193-204. doi: 10.1128/JVI.01889-10. Epub 2010 Nov 3.

Abstract

Hepatitis C virus NS3-4A is a membrane-bound enzyme complex that exhibits serine protease, RNA helicase, and RNA-stimulated ATPase activities. This enzyme complex is essential for viral genome replication and has been recently implicated in virus particle assembly. To help clarify the role of NS4A in these processes, we conducted alanine scanning mutagenesis on the C-terminal acidic domain of NS4A in the context of a chimeric genotype 2a reporter virus. Of 13 mutants tested, two (Y45A and F48A) had severe defects in replication, while seven (K41A, L44A, D49A, E50A, M51A, E52A, and E53A) efficiently replicated but had severe defects in virus particle assembly. Multiple strategies were used to identify second-site mutations that suppressed these NS4A defects. The replication defect of NS4A F48A was partially suppressed by mutation of NS4B I7F, indicating that a genetic interaction between NS4A and NS4B contributes to RNA replication. Furthermore, the virus assembly defect of NS4A K41A was suppressed by NS3 Q221L, a mutation previously implicated in overcoming other virus assembly defects. We therefore examined the known enzymatic activities of wild-type or mutant forms of NS3-4A but did not detect specific defects in the mutants. Taken together, our data reveal interactions between NS4A and NS4B that control genome replication and between NS3 and NS4A that control virus assembly.

摘要

丙型肝炎病毒 NS3-4A 是一种膜结合的酶复合物,具有丝氨酸蛋白酶、RNA 解旋酶和 RNA 刺激的 ATP 酶活性。该酶复合物对于病毒基因组复制是必需的,最近已被牵连到病毒粒子组装中。为了帮助阐明 NS4A 在这些过程中的作用,我们在嵌合基因型 2a 报告病毒的背景下对 NS4A 的 C 末端酸性结构域进行了丙氨酸扫描诱变。在测试的 13 个突变体中,有两个(Y45A 和 F48A)在复制中存在严重缺陷,而有七个(K41A、L44A、D49A、E50A、M51A、E52A 和 E53A)高效复制但在病毒粒子组装中存在严重缺陷。使用多种策略来鉴定可以抑制这些 NS4A 缺陷的第二位置突变。NS4A F48A 的复制缺陷部分被 NS4B I7F 的突变所抑制,表明 NS4A 和 NS4B 之间的遗传相互作用有助于 RNA 复制。此外,NS4A K41A 的病毒组装缺陷被 NS3 Q221L 抑制,该突变先前被牵连到克服其他病毒组装缺陷。因此,我们检查了野生型或突变形式的 NS3-4A 的已知酶活性,但未在突变体中检测到特定缺陷。总之,我们的数据揭示了 NS4A 和 NS4B 之间控制基因组复制的相互作用以及 NS3 和 NS4A 之间控制病毒组装的相互作用。

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