Das Kalyan, Martinez Sergio E, Bandwar Rajiv P, Arnold Eddy
Center for Advanced Biotechnology and Medicine, Department of Chemistry and Chemical Biology, Rutgers University, Piscataway, NJ 08854, USA.
Center for Advanced Biotechnology and Medicine, Department of Chemistry and Chemical Biology, Rutgers University, Piscataway, NJ 08854, USA
Nucleic Acids Res. 2014 Jul;42(12):8125-37. doi: 10.1093/nar/gku487. Epub 2014 May 31.
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.
在从病毒RNA合成双链DNA的过程中,HIV-1逆转录酶(RT)会生成一个RNA/DNA中间体。RT还会降解RNA链并合成第二条DNA链。RT的核糖核酸酶H活性位点作为核酸酶发挥作用,切割RNA链;然而,RNA链内切酶切割的结构基础仍然不清楚。在这里,我们分别报告了分辨率为2.5 Å和2.9 Å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与DNA/DNA三元复合物相似,只是RNA链的2'-OH基团有额外的相互作用。与DNA/DNA底物相比,RNA/DNA在第七个核苷酸之后的构象和结合情况有显著偏差。NVP的结合使RNA/DNA在RT上不均匀滑动,并且RNA链向核糖核酸酶H活性位点靠近。另外两个结构,一个包含有缺口的RNA,另一个包含凸起的RNA,揭示了RNA/DNA的构象变化以及与核糖核酸酶H结构域增加的相互作用,包括一个2'-OH与N474的相互作用,有助于将RNA定位得更靠近活性位点。这些结构和现有的生化数据表明了一种核酸构象诱导机制来指导RNA链的切割。