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Molecular Simulations Illuminate the Role of Regulatory Components of the RNA Polymerase from the Hepatitis C Virus in Influencing Protein Structure and Dynamics

机译:分子模拟阐明丙型肝炎病毒RNA聚合酶调节成分在影响蛋白质结构和动力学中的作用

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摘要

The RNA polymerase (gene product NS5B) from the hepatitis C virus is responsible for replication of the viral genome and is a validated drug target for new therapeutic agents. NS5B has a structure resembling an open right hand (containing the fingers, palm, and thumb subdomains), a hydrophobic C-terminal region, and two magnesium ions coordinated in the palm domain. Biochemical data suggest that the magnesium ions provide structural stability and are directly involved in catalysis, while the C-terminus plays a regulatory role in NS5B function. Nevertheless, the molecular mechanisms by which these two features regulate polymerase activity remain unclear. To answer this question, we performed molecular dynamics simulations of NS5B variants with different C-terminal lengths in the presence or absence of magnesium ions to determine the impact on enzyme properties. We observed that metal binding increases both the magnitude and the degree of correlated enzyme motions. In contrast, we observed that the C-terminus restricts enzyme dynamics. Under certain conditions, our simulations revealed a fully closed conformation of NS5B that may facilitate de novo initiation of RNA replication. This knowledge is important because it fosters the development of a comprehensive description of RNA replication by NS5B and is relevant to understanding the functional properties of a broad class of related RNA polymerases such as 3D-pol from poliovirus. Ultimately, this information may also be pertinent to designing novel NS5B therapeutics.
机译:丙型肝炎病毒的RNA聚合酶(基因产物NS5B)负责病毒基因组的复制,是新治疗剂的有效药物靶标。 NS5B具有类似于右手开放的结构(包含手指,手掌和拇指子域),疏水性C端区域以及在手掌域中配位的两个镁离子。生化数据表明,镁离子可提供结构稳定性并直接参与催化作用,而C端在NS5B功能中起调节作用。然而,尚不清楚这两个特征调节聚合酶活性的分子机制。为了回答这个问题,我们在存在或不存在镁离子的情况下,对具有不同C末端长度的NS5B变体进行了分子动力学模拟,以确定对酶性能的影响。我们观察到金属结合增加了相关酶运动的幅度和程度。相反,我们观察到C末端限制了酶的动力学。在某些条件下,我们的模拟揭示了NS5B的完全封闭构象,这可能有助于从头开始RNA复制。该知识很重要,因为它促进了NS5B对RNA复制的全面描述的发展,并且与理解各种相关RNA聚合酶(如脊髓灰质炎病毒的3D-pol)的功能特性有关。最终,该信息也可能与设计新型NS5B治疗药物有关。

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  • 期刊名称 other
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  • 年(卷),期 -1(52),26
  • 年度 -1
  • 页码 4541–4552
  • 总页数 30
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