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Structural Analysis of the Hepatitis C Virus RNA Polymerase in Complex with Ribonucleotides

机译:丙型肝炎病毒RNA聚合酶与核糖核苷酸复合物的结构分析

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摘要

We report here the results of a systematic high-resolution X-ray crystallographic analysis of complexes of the hepatitis C virus (HCV) RNA polymerase with ribonucleoside triphosphates (rNTPs) and divalent metal ions. An unexpected observation revealed by this study is the existence of a specific rGTP binding site in a shallow pocket at the molecular surface of the enzyme, 30 Å away from the catalytic site. This previously unidentified rGTP pocket, which lies at the interface between fingers and thumb, may be an allosteric regulatory site and could play a role in allowing alternative interactions between the two domains during a possible conformational change of the enzyme required for efficient initiation. The electron density map at 1.7-Å resolution clearly shows the mode of binding of the guanosine moiety to the enzyme. In the catalytic site, density corresponding to the triphosphates of nucleotides bound to the catalytic metals was apparent in each complex with nucleotides. Moreover, a network of triphosphate densities was detected; these densities superpose to the corresponding moieties of the nucleotides observed in the initiation complex reported for the polymerase of bacteriophage φ6, strengthening the proposal that the two enzymes initiate replication de novo by similar mechanisms. No equivalent of the protein stacking platform observed for the priming nucleotide in the φ6 enzyme is present in HCV polymerase, however, again suggesting that a change in conformation of the thumb domain takes place upon template binding to allow for efficient de novo initiation of RNA synthesis.
机译:我们在这里报告对丙型肝炎病毒(HCV)RNA聚合酶与核糖核苷三磷酸(rNTPs)和二价金属离子的复合物进行系统高分辨率X射线晶体学分析的结果。这项研究揭示了一个出乎意料的观察结果,即该酶的分子表面浅口袋中存在一个特定的rGTP结合位点,该位点距催化位点30Å。位于手指和拇指之间的界面上的这个先前无法识别的rGTP口袋可能是变构调节位点,并可能在有效启动所需的酶可能构象变化期间,允许两个域之间的替代相互作用。 1.7-Å分辨率的电子密度图清楚地表明了鸟苷部分与酶的结合方式。在催化位点中,在每个具有核苷酸的复合物中,对应于与催化金属结合的核苷酸的三磷酸的对应的密度是明显的。此外,检测到三磷酸密度网络。这些密度与在噬菌体φ6的聚合酶报道的起始复合物中观察到的核苷酸的相应部分重叠,从而增强了这两种酶通过类似机制从头开始复制的提议。 HCV聚合酶中没有发现与φ6酶中的启动核苷酸相对应的蛋白质堆积平台,但是,这再次表明,在模板结合后拇指域构象发生了变化,从而可以有效地从头开始RNA合成。

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