首页> 美国卫生研究院文献>Journal of Virology >Priming of duck hepatitis B virus reverse transcription in vitro: premature termination of primer DNA induced by the 5-triphosphate of fialuridine.
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Priming of duck hepatitis B virus reverse transcription in vitro: premature termination of primer DNA induced by the 5-triphosphate of fialuridine.

机译:鸭乙型肝炎病毒体外引物的引发:由氟尿嘧啶的5-三磷酸诱导的引物DNA提前终止。

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摘要

Hepadnaviruses employ a unique mechanism for the initiation of RNA-directed DNA synthesis. Initially, four bases (5'-GTAA-3') are added to a tyrosine residue of the viral polymerase by reverse transcription of a bulge sequence in epsilon, a stem-loop structure which functions as the packaging signal for pregenomic RNA. This protein-DNA complex acts as the primer for minus-strand elongation from the 3' sequence, DR1. To understand this process in greater detail, we investigated whether the protein-mediated priming of viral DNA synthesis is affected by nucleotide analogs. By using cell-free expression of duck hepatitis B virus (DHBV) reverse transcriptase (G.-H. Wang and C. Seeger, Cell 71:663-670, 1992), the 5'-triphosphate of the thymidine analog fialuridine (FIAU) was shown to inhibit the incorporation of radiolabeled TMP into primer DNA in a dose-dependent manner. Inhibition by the 5'-triphosphate of FIAU (FIAU-TP) was nearly complete at a concentration of 10 microM. The dideoxynucleotide analogs ddGTP, ddTTP, and 3'-azidodeoxythymidine triphosphate, known inhibitors of DHBV endogenous DNA polymerase, did not affect substantially the synthesis of primer DNA. Alternate substrate analysis suggested that FIAU is incorporated efficiently into nascent primer DNA as an analog of thymidine. Using site-directed mutagenesis to construct a mutant RNA template yielding a primer with the sequence 5'-GTAC-3', we demonstrated that FIAU-TP inhibited the incorporation of TMP, had no effect on that of dAMP, and decreased markedly the incorporation of dCMP. These results show that the synthesis of full-length DHBV primer DNA is inhibited by FIAU-TP but not by the dideoxynucleotide analogs that we tested. The significance of these findings as they relate to HBV DNA replication is discussed.
机译:肝炎病毒采用独特的机制启动RNA定向的DNA合成。最初,通过ε中一个凸起序列的逆转录,将四个碱基(5'-GTAA-3')添加到病毒聚合酶的酪氨酸残基上,ε是一个茎环结构,充当前基因组RNA的包装信号。这种蛋白质-DNA复合物充当3'序列DR1负链延伸的引物。为了更详细地了解此过程,我们研究了核苷酸类似物是否影响病毒DNA合成的蛋白质介导的启动。通过使用无细胞表达的鸭乙型肝炎病毒(DHBV)逆转录酶(G.-H. Wang和C.Seeger,Cell 71:663-670,1992),胸苷类似物氟尿嘧啶(FIAU)的5'-三磷酸已显示)以剂量依赖性方式抑制放射性标记的TMP掺入引物DNA中。在浓度为10 microM时,FIAU(FIAU-TP)的5'-三磷酸酯的抑制作用几乎完成。已知的DHBV内源DNA聚合酶抑制剂双脱氧核苷酸类似物ddGTP,ddTTP和3'-叠氮脱氧胸苷三磷酸基本上不影响引物DNA的合成。备选的底物分析表明,FIAU作为胸苷的类似物可有效地掺入新生引物DNA中。使用定点诱变构建突变RNA模板,产生具有5'-GTAC-3'序列的引物,我们证明FIAU-TP抑制了TMP的掺入,对dAMP的掺入没有影响,并显着降低了掺入dCMP。这些结果表明全长DHBV引物DNA的合成受FIAU-TP抑制,但不受我们测试的双脱氧核苷酸类似物抑制。讨论了这些发现与HBV DNA复制有关的意义。

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