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Structural studies of Helicase NS3 variants from Hepatitis C virus genotype 3 in virological sustained responder and non-responder patients

机译:病毒学持续应答者和非应答者中丙型肝炎病毒基因型3的解旋酶NS3变体的结构研究

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Background About 130 million people are infected with the hepatitis C virus (HCV) worldwide, but effective treatment options are not yet available. One of the most promising targets for antiviral therapy is nonstructural protein 3 (NS3). To identify possible changes in the structure of NS3 associated with virological sustained response or non-response of patients, a model was constructed for each helicase NS3 protein coding sequence. From this, the goal was to verify the interaction between helicases variants and their ligands. Findings Evidence was found that the NS3 helicase portion of non-responder patients contained substitutions in its ATP and RNA binding sites. K210E substitution can cause an imbalance in the distribution of loads, leading to a decrease in the number of ligations between the essential amino acids required for the hydrolysis of ATP. W501R substitution causes an imbalance in the distribution of loads, leading and forcing the RNA to interact with the amino acid Thr269, but not preventing binding of ribavirin inhibitor. Conclusions Useful information is provided on the genetic profiling of the HCV genotype 3, specifically the coding region of the NS3 protein, improving our understanding of the viral genome and the regions of its protein catalytic site.
机译:背景技术全世界大约有1.3亿人感染了丙型肝炎病毒(HCV),但尚无有效的治疗选择。抗病毒治疗的最有希望的目标之一是非结构蛋白3(NS3)。为了确定与患者的病毒学持续应答或无应答相关的NS3结构的可能变化,为每个解旋酶NS3蛋白编码序列构建了一个模型。由此,目的是验证解旋酶变体与其配体之间的相互作用。结果发现,无反应患者的NS3解旋酶部分在其ATP和RNA结合位点包含取代。 K210E取代会导致负载分布不平衡,从而导致ATP水解所需的必需氨基酸之间的连接数减少。 W501R取代导致负载分布失衡,导致并迫使RNA与氨基酸Thr269相互作用,但并不能阻止病毒唑抑制剂的结合。结论提供了有关HCV基因型3的基因谱分析的有用信息,特别是NS3蛋白的编码区,从而增进了我们对病毒基因组及其蛋白催化位点区域的了解。

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