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Residues Arg703 Asp777 and Arg781 of the RNase H Domain of Hepatitis B Virus Polymerase Are Critical for Viral DNA Synthesis

机译:乙型肝炎病毒聚合酶RNase H结构域的残基Arg703Asp777和Arg781对病毒DNA合成至关重要

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摘要

Hepatitis B virus (HBV) synthesizes its DNA genome through reverse transcription, which is catalyzed by viral polymerase (Pol). Previous studies suggested that the RNase H domain of hepadnaviral Pol may contribute to multiple steps of the viral genome replication, such as RNA encapsidation and viral DNA synthesis. However, specific residues of the RNase H domain that contribute to viral reverse transcription have not been determined. Therefore, we employed charged-to-alanine scanning mutagenesis to generate a set of single-substitution mutants of the RNase H domain and then analyzed their ability to support viral reverse transcription. Southern blot analysis showed that three mutants (R703A, D777A, and R781A mutants) yielded significantly reduced amounts of viral DNAs. However, none of these mutants were defective in RNA encapsidation. The data indicated that in the R703A and D777A mutants, minus-strand DNA synthesis was incomplete due to loss of catalytic activity of RNase H. In contrast, in the R781A mutant, the minus-strand DNA synthesis was near complete to some extent, while the plus-strand DNA synthesis (i.e., relaxed circular DNA) was severely impaired due to the defect in RNase H activity. Overall, our analysis revealed that three charged residues of the HBV Pol RNase H domain contribute to the catalysis of RNase H in removing the RNA template, but not in the RNA encapsidation.
机译:乙型肝炎病毒(HBV)通过逆转录合成其DNA基因组,而逆转录是由病毒聚合酶(Pol)催化的。先前的研究表明,肝炎病毒Pol的RNase H结构域可能有助于病毒基因组复制的多个步骤,例如RNA衣壳化和病毒DNA合成。但是,尚未确定有助于病毒逆转录的RNase H结构域的特定残基。因此,我们采用了带电荷的丙氨酸扫描诱变来生成一组RNase H结构域的单取代突变体,然后分析它们支持病毒逆转录的能力。 Southern印迹分析表明,三个突变体(R703A,D777A和R781A突变体)产生的病毒DNA量明显减少。但是,这些突变体都没有RNA衣壳的缺陷。数据表明,在R703A和D777A突变体中,负链DNA的合成由于RNase H催化活性的丧失而未完成。相反,在R781A突变体中,负链DNA的合成在一定程度上接近完成,而由于RNase H活性的缺陷,正链DNA的合成(即松弛的环状DNA)严重受损。总体而言,我们的分析表明,HBV Pol RNase H结构域的三个带电残基在去除RNA模板时有助于RNase H的催化作用,但在RNA衣壳化过程中却没有。

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