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丙型肝炎病毒最佳复制所需的NS3解旋酶表面残基的结构与生物学鉴定

Structural and biological identification of residues on the surface of NS3 helicase required for optimal replication of the hepatitis C virus.

作者信息

Mackintosh Samuel G, Lu Jeff Zhiqiang, Jordan John B, Harrison Melody K, Sikora Bartek, Sharma Suresh D, Cameron Craig E, Raney Kevin D, Sakon Joshua

机构信息

Department of Biochemistry and Molecular Biology, University of Arkansas for Medical Sciences, Little Rock, Arkansas 72205, USA.

出版信息

J Biol Chem. 2006 Feb 10;281(6):3528-35. doi: 10.1074/jbc.M512100200. Epub 2005 Nov 22.

Abstract

The hepatitis C virus (HCV) nonstructural protein 3 (NS3) is a multifunctional enzyme with serine protease and DEXH/D-box helicase domains. A crystal structure of the NS3 helicase domain (NS3h) was generated in the presence of a single-stranded oligonucleotide long enough to accommodate binding of two molecules of enzyme. Several amino acid residues at the interface of the two NS3h molecules were identified that appear to mediate a protein-protein interaction between domains 2 and 3 of adjacent molecules. Mutations were introduced into domain 3 to disrupt the putative interface and subsequently examined using an HCV subgenomic replicon, resulting in significant reduction in replication capacity. The mutations in domain 3 were then examined using recombinant NS3h in biochemical assays. The mutant enzyme showed RNA binding and RNA-stimulated ATPase activity that mirrored wild type NS3h. In DNA unwinding assays under single turnover conditions, the mutant NS3h exhibited a similar unwinding rate and only approximately 2-fold lower processivity than wild type NS3h. Overall biochemical activities of the mutant NS3h were similar to the wild type enzyme, which was not reflective of the large reduction in HCV replicative capacity observed in the biological experiment. Hence, the biological results suggest that the known biochemical properties associated with the helicase activity of NS3h do not reveal all of the likely biological roles of NS3 during HCV replication. Domain 3 of NS3 is implicated in protein-protein interactions that are necessary for HCV replication.

摘要

丙型肝炎病毒(HCV)非结构蛋白3(NS3)是一种具有丝氨酸蛋白酶和DEXH/D-box解旋酶结构域的多功能酶。在存在足够长的单链寡核苷酸以容纳两个酶分子结合的情况下,生成了NS3解旋酶结构域(NS3h)的晶体结构。鉴定出两个NS3h分子界面处的几个氨基酸残基,这些残基似乎介导相邻分子的结构域2和结构域3之间的蛋白质-蛋白质相互作用。将突变引入结构域3以破坏假定的界面,随后使用HCV亚基因组复制子进行检测,结果导致复制能力显著降低。然后在生化分析中使用重组NS3h对结构域3中的突变进行检测。突变酶显示出与野生型NS3h相似的RNA结合和RNA刺激的ATP酶活性。在单轮条件下的DNA解旋分析中,突变型NS3h表现出相似的解旋速率,且与野生型NS3h相比,其持续合成能力仅低约2倍。突变型NS3h的总体生化活性与野生型酶相似,这与生物学实验中观察到的HCV复制能力大幅降低并不相符。因此,生物学结果表明,与NS3h解旋酶活性相关的已知生化特性并未揭示NS3在HCV复制过程中所有可能的生物学作用。NS3的结构域3参与了HCV复制所必需的蛋白质-蛋白质相互作用。

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