首页> 外文期刊>Nucleic Acids Research >In vitro evidence for the interaction of tRNA(3)(Lys) with U3 during the first strand transfer of HIV-1 reverse transcription.
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In vitro evidence for the interaction of tRNA(3)(Lys) with U3 during the first strand transfer of HIV-1 reverse transcription.

机译:HIV-1逆转录的第一链转移过程中,tRNA(3)(Lys)与U3相互作用的体外证据。

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Over the course of its evolution, HIV-1 has taken maximum advantage of its tRNA(3)(Lys)primer by utilizing it in several steps of reverse transcription. Here, we have identified a conserved nonanucleotide sequence in the U3 region of HIV-1 RNA that is complementary to the anticodon stem of tRNA(3)(Lys). In order to test its possible role in the first strand transfer reaction, we applied an assay using a donor RNA corresponding to the 5'-part and an acceptor RNA spanning the 3'-part of HIV-1 RNA. In addition, we constructed two acceptor RNAs in which the nonanucleotide sequence complementary to tRNA(3)(Lys)was either substituted (S) or deleted (Delta). We used either natural tRNA(3)(Lys)or an 18 nt DNA as primer and measured the efficiency of (-) strand strong stop DNA transfer in the presence of wild-type, S or Delta acceptor RNA. Mutations in U3 did not decrease the transfer efficiency when reverse transcription was primed with the 18mer DNA. However, they significantly reduced the strand transfer efficiency in the tRNA(3)(Lys)-primed reactions. This reduction was also observed in the presence of nucleocapsid protein. These results suggest that tRNA(3)(Lys)increases (-) strand strong stop transfer by interacting with the U3 region of the genomic RNA. Sequence comparisons suggest that such long range interactions also exist in other lentiviruses.
机译:在其演变过程中,HIV-1通过在逆转录的多个步骤中利用它的tRNA(3)(Lys)引物,从而发挥了最大的优势。在这里,我们已经确定了与tRNA(3)(Lys)的反密码子茎互补的HIV-1 RNA的U3区域中的一个保守的非核苷酸序列。为了测试其在第一链转移反应中的可能作用,我们应用了一种检测方法,该方法使用了对应于HIV-1 RNA 5'-部分的供体RNA和跨越HIV-1 RNA 3'-部分的受体RNA。此外,我们构建了两个受体RNA,其中与tRNA(3)(Lys)互补的九核苷酸序列被取代(S)或被删除(Delta)。我们使用天然的tRNA(3)(Lys)或18 nt DNA作为引物,并在存在野生型,S或Delta受体RNA的情况下测量了(-)链强终止DNA转移的效率。当用18mer DNA引发逆转录时,U3中的突变不会降低转移效率。但是,他们大大降低了在tRNA(3)(Lys)启动的反应中的链转移效率。在存在核衣壳蛋白的情况下也观察到这种减少。这些结果表明,tRNA(3)(Lys)通过与基因组RNA的U3区域相互作用,增加了(-)链的强终止转移。序列比较表明在其他慢病毒中也存在这种长距离相互作用。

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