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丙型肝炎病毒非结构蛋白5B聚合酶在病毒X RNA上进行从头RNA合成的模板要求。

Template requirements for de novo RNA synthesis by hepatitis C virus nonstructural protein 5B polymerase on the viral X RNA.

作者信息

Kim Meehyein, Kim Hajeong, Cho Seong-Pil, Min Mi-Kyung

机构信息

Mogam Biotechnology Research Institute, Pojung-ri, Koosung-myun, Yongin City, Kyonggi-do 449-913, South Korea.

出版信息

J Virol. 2002 Jul;76(14):6944-56. doi: 10.1128/jvi.76.14.6944-6956.2002.

Abstract

The hepatitis C virus (HCV)-encoded NS5B protein is an RNA-dependent RNA polymerase which plays a substantial role in viral replication. We expressed and purified the recombinant NS5B of an HCV genotype 3a from Esherichia coli, and we investigated its ability to bind to the viral RNA and its enzymatic activity. The results presented here demonstrate that NS5B interacts strongly with the coding region of positive-strand RNA, although not in a sequence-specific manner. It was also determined that more than two molecules of polymerase bound sequentially to this region with the direction 3' to 5'. Also, we attempted to determine the initiation site(s) of de novo synthesis by NS5B on X RNA, which contains the last 98 nucleotides of HCV positive-strand RNA. The initiation site(s) on X RNA was localized in the pyrimidine-rich region of stem I. However, when more than five of the nucleotides of stem I in X RNA were deleted from the 3' end, RNA synthesis initiated at another site of the specific ribonucleotide. Our study also showed that the efficiency of RNA synthesis, which was directed by X RNA, was maximized by the GC base pair at the penultimate position from the 3' end of the stem. These results will provide some clues to understanding the mechanism of HCV genomic RNA replication in terms of viral RNA-NS5B interaction and the initiation of de novo RNA synthesis.

摘要

丙型肝炎病毒(HCV)编码的NS5B蛋白是一种依赖RNA的RNA聚合酶,在病毒复制中起重要作用。我们从大肠杆菌中表达并纯化了HCV 3a基因型的重组NS5B,并研究了其与病毒RNA结合的能力及其酶活性。此处呈现的结果表明,NS5B与正链RNA的编码区强烈相互作用,尽管不是以序列特异性方式。还确定了超过两个聚合酶分子以3'至5'的方向依次结合到该区域。此外,我们试图确定NS5B在X RNA上从头合成的起始位点,X RNA包含HCV正链RNA的最后98个核苷酸。X RNA上的起始位点位于茎环I富含嘧啶的区域。然而,当从3'端删除X RNA中茎环I的超过五个核苷酸时,RNA合成在特定核糖核苷酸的另一个位点起始。我们的研究还表明,由X RNA指导的RNA合成效率在茎环3'端倒数第二个位置的GC碱基对作用下最大化。这些结果将为从病毒RNA-NS5B相互作用和从头RNA合成起始方面理解HCV基因组RNA复制机制提供一些线索。

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