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Structures of HIV-1 RT-RNA/DNA ternary complexes with dATP and nevirapine reveal conformational flexibility of RNA/DNA: insights into requirements for RNase H cleavage

机译:具有dATP和奈韦拉平的HIV-1 RT-RNA / DNA三元复合物的结构揭示了RNA / DNA的构象灵活性:洞悉RNase H裂解的需求

摘要

In synthesizing a double-stranded DNA from viral RNA, HIV-1 reverse transcriptase (RT) generates an RNA/DNA intermediate. RT also degrades the RNA strand and synthesizes the second DNA strand. The RNase H active site of RT functions as a nuclease to cleave the RNA strand; however, the structural basis for endonucleolytic cleavage of the RNA strand remains elusive. Here we report crystal structures of RT-RNA/DNA-dATP and RT-RNA/DNA-nevirapine (NVP) ternary complexes at 2.5 and 2.9 Å resolution, respectively. The polymerase region of RT-RNA/DNA-dATP complex resembles DNA/DNA ternary complexes apart from additional interactions of 2'-OH groups of the RNA strand. The conformation and binding of RNA/DNA deviates significantly after the seventh nucleotide versus a DNA/DNA substrate. Binding of NVP slides the RNA/DNA non-uniformly over RT, and the RNA strand moves closer to the RNase H active site. Two additional structures, one containing a gapped RNA and another a bulged RNA, reveal that conformational changes of an RNA/DNA and increased interactions with the RNase H domain, including the interaction of a 2'-OH with N474, help to position the RNA nearer to the active site. The structures and existing biochemical data suggest a nucleic acid conformation-induced mechanism for guiding cleavage of the RNA strand.
机译:从病毒RNA合成双链DNA时,HIV-1逆转录酶(RT)产生RNA / DNA中间体。 RT还降解RNA链并合成第二条DNA链。 RT的RNase H活性位点可作为核酸酶切割RNA链。但是,RNA链的核酸内切酶切割的结构基础仍然难以捉摸。在这里,我们分别报告了分辨率为2.5和2.9的RT-RNA / DNA-dATP和RT-RNA / DNA-奈韦拉平(NVP)三元复合物的晶体结构。 RT-RNA / DNA-dATP复合物的聚合酶区域类似于DNA / DNA三元复合物,除了RNA链2'-OH基团的其他相互作用。在第七个核苷酸之后,RNA / DNA的构象和结合​​显着偏离了DNA / DNA底物。 NVP的结合会在RT上非均匀地滑动RNA / DNA,并且RNA链更靠近RNase H活性位点。另外两个结构(一个包含有缺口的RNA和另一个凸起的RNA)揭示了RNA / DNA的构象变化以及与RNase H结构域的相互作用增强,包括2'-OH与N474的相互作用,有助于定位RNA更接近活动站点。该结构和现有的生化数据表明,核酸构象诱导的机制可指导RNA链的切割。

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