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首页> 外文期刊>Journal of Hepatology: The Journal of the European Association for the Study of the Liver >Cross-genotypic interaction between hepatitis C virus NS3 protease domains and NS4A cofactors.
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Cross-genotypic interaction between hepatitis C virus NS3 protease domains and NS4A cofactors.

机译:丙型肝炎病毒NS3蛋白酶结构域和NS4A辅助因子之间的跨基因型相互作用。

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摘要

BACKGROUND/AIMS: Hepatitis C virus (HCV) nonstructural protein 3 (NS3) protease requires NS4A as a cofactor. This cofactor activity has been mapped to the central region of NS4A which interacts with the N-terminus of NS3 protease. To investigate whether this interaction is conserved among different genotypes of HCV cross-genotypic characterization were performed to delineate the importance of NS4A cofactor function in relation to the molecular evolution of HCV METHODS: Active NS3 protease domains of genotype 1-3 (representing five subtypes: la, 1b, 2a, 2b and 3a) were produced and purified from bacterial cells. NS4A cofactor-dependent in vitro trans cleavage assays were established using the in vitro translated recombinant protein substrates. These substrates contained the junction site of NS4A/NS4B, NS4B/NS5A or NS5A/NS5B. RESULTS: Our data revealed that NS3 proteases cross-interacted with NS4A cofactors derived from different genotypes, although the genotype 2 cofactor was less efficient, which could be due to greater genetic variations in this region. Furthermore, the corresponding region in hepatitis G virus (HGV) NS4A was found to provide weak cofactor activity for HCV NS3 protease. Surprisingly, a synthetic substrate peptide from the NS4B/NS5A junction was also found to enhance HCV NS3 protease activity in a dose-dependent manner. CONCLUSION: Our study suggests that the NS4A cofactor function is well conserved among HCV It is likely that other HCV-related viruses may have developed similar strategies to regulate their protease activity.
机译:背景/目的:丙型肝炎病毒(HCV)非结构蛋白3(NS3)蛋白酶需要NS4A作为辅助因子。该辅助因子活性已被定位到与NS3蛋白酶的N末端相互作用的NS4A的中央区域。为了研究这种相互作用是否在HCV的不同基因型之间被保守,进行了跨基因型表征以描述NS4A辅因子功能与HCV分子进化有关的重要性。方法:基因型1-3的活跃NS3蛋白酶结构域(代表五个亚型:从细菌细胞产生并纯化1a,1b,2a,2b和3a)。使用体外翻译的重组蛋白底物建立了NS4A辅因子依赖性的体外反转录分析方法。这些底物包含NS4A / NS4B,NS4B / NS5A或NS5A / NS5B的连接位点。结果:我们的数据表明,NS3蛋白酶与衍生自不同基因型的NS4A辅助因子发生交叉相互作用,尽管基因型2的辅助因子效率较低,这可能是由于该区域的更大遗传变异所致。此外,发现丙型肝炎病毒(HGV)NS4A中的相应区域为HCV NS3蛋白酶提供了弱的辅因子活性。令人惊讶地,还发现了来自NS4B / NS5A连接的合成底物肽以剂量依赖的方式增强了HCV NS3蛋白酶的活性。结论:我们的研究表明,NS4A辅因子功能在HCV中是非常保守的。其他HCV相关病毒可能已经开发出类似的策略来调节其蛋白酶活性。

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