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Structure of Hepatitis C Virus Polymerase in Complex with Primer-Template RNA

机译:带有引物模板RNA的丙型肝炎病毒聚合酶的结构

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摘要

The replication of the hepatitis C viral (HCV) genome is accomplished by the NS5B RNA-dependent RNA polymerase (RdRp), for which mechanistic understanding and structure-guided drug design efforts have been hampered by its propensity to crystallize in a closed, polymerization-incompetent state. The removal of an autoinhibitory β-hairpin loop from genotype 2a HCV NS5B increases de novo RNA synthesis by >100-fold, promotes RNA binding, and facilitated the determination of the first crystallographic structures of HCV polymerase in complex with RNA primer-template pairs. These crystal structures demonstrate the structural realignment required for primer-template recognition and elongation, provide new insights into HCV RNA synthesis at the molecular level, and may prove useful in the structure-based design of novel antiviral compounds. Additionally, our approach for obtaining the RNA primer-template-bound structure of HCV polymerase may be generally applicable to solving RNA-bound complexes for other viral RdRps that contain similar regulatory β-hairpin loops, including bovine viral diarrhea virus, dengue virus, and West Nile virus.
机译:丙型肝炎病毒(HCV)基因组的复制是通过NS5B RNA依赖的RNA聚合酶(RdRp)完成的,对于这种机理的理解和结构指导的药物设计工作已因其在封闭,聚合,不称职的状态。从基因型2a HCV NS5B中去除自抑制性β-发夹环可使新RNA合成增加> 100倍,促进RNA结合,并有助于确定具有RNA引物-模板对的HCV聚合酶的第一个晶体结构。这些晶体结构证明了引物模板识别和延伸所需的结构重排,在分子水平上为HCV RNA合成提供了新的见识,并可能被证明可用于新型抗病毒化合物的基于结构的设计。此外,我们获得HCV聚合酶的RNA引物与模板结合的结构的方法通常可用于解决包含相似的调节性β-发夹环的其他病毒RdRps的RNA结合复合物,包括牛病毒性腹泻病毒,登革热病毒和西尼罗病毒。

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