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丙型肝炎病毒NS4A对NS3内部切割和多聚蛋白加工的不同需求。

Differential requirements of NS4A for internal NS3 cleavage and polyprotein processing of hepatitis C virus.

作者信息

Kou Yi-Hen, Chang Ming-Fu, Wang Yi-Ming, Hung Tzu-Min, Chang Shin C

机构信息

Institute of Microbiology, College of Medicine, National Taiwan University, Taipei, Taiwan, Republic of China.

出版信息

J Virol. 2007 Aug;81(15):7999-8008. doi: 10.1128/JVI.00348-07. Epub 2007 May 23.

Abstract

The NS3 protein of hepatitis C virus (HCV) possesses protease activity responsible for the proteolytic cleavage of the viral polyprotein at the junctions of nonstructural proteins downstream of NS3. The NS3 protein was also found to be internally cleaved. In this study, we demonstrated that internal cleavages occurred on the NS3 protein of genotype 1b in the presence of NS4A, both in culture cells and with a mouse model system. No internal cleavage products were detected with the NS3 and NS4A proteins of genotype 2a. Three potential cleavage sites were detected in the NS3 protein (genotype 1b), with IPT(402)|S being the major one. The internal cleavage requires the polyprotein processing activity of NS3 protease, but when supplemented in trans, the internal cleavage efficiency is reduced. In addition, several mutations in NS4A disrupted the internal cleavage of NS3 but did not affect polyprotein processing, indicating that NS4A contributes differently to these two proteolytic activities. Furthermore, Ile-25, Val-26, and Ile-29 of the NS4A protein, important for the NS4A-dependent internal cleavages, were also shown to be critical for the transforming activity of NS3, but mutations at these critical residues resulted only in a slight increase of HCV replicating efficiency. The internal cleavage-associated enhancement of the transforming activity of NS3 was reduced when a T402A substitution at the major internal cleavage site was introduced. The multiple roles of NS4A in viral multiplication and pathogenesis make NS4A an ideal molecular target for HCV therapy.

摘要

丙型肝炎病毒(HCV)的NS3蛋白具有蛋白酶活性,负责在NS3下游非结构蛋白连接处对病毒多聚蛋白进行蛋白水解切割。还发现NS3蛋白会发生内部切割。在本研究中,我们证明,在培养细胞和小鼠模型系统中,在NS4A存在的情况下,1b基因型的NS3蛋白会发生内部切割。2a基因型的NS3和NS4A蛋白未检测到内部切割产物。在NS3蛋白(1b基因型)中检测到三个潜在切割位点,其中IPT(402)|S是主要切割位点。内部切割需要NS3蛋白酶的多聚蛋白加工活性,但当反式补充时,内部切割效率会降低。此外,NS4A中的几个突变破坏了NS3的内部切割,但不影响多聚蛋白加工,这表明NS4A对这两种蛋白水解活性的贡献不同。此外,NS4A蛋白的Ile-25、Val-26和Ile-29对NS4A依赖性内部切割很重要,也被证明对NS3的转化活性至关重要,但这些关键残基的突变仅导致HCV复制效率略有增加。当在主要内部切割位点引入T402A替代时,与内部切割相关的NS3转化活性增强作用降低。NS4A在病毒增殖和发病机制中的多种作用使其成为HCV治疗的理想分子靶点。

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