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New insights into the formation of HIV-1 reverse transcription initiation complex

机译:HIV-1逆转录起始复合物形成的新见解

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HIV-1 reverse transcriptase uses the host tRNA_3~(Lys) as a primer for the synthesis of the minus DNA strand. The first event in viral replication is thus the annealing of tRNA to the primer binding site (PBS) in the 5' UTR of the viral RNA. This event requires a major RNA rearrangement which is chaperoned by the viral NC protein. The binding of NC to nucleic acids is essentially non-specific, however, NC is known to bind selectively to hairpins located in the 5' region of the viral RNA. In a previous study, using an NMR approach in which the reaction is slowed down by controlling temperature, we were able to follow details in this RNA unfolding/refolding process and to uncover an intermediate state. We showed that annealing initiates at the junction between the acceptor and the TΨC stems, and that, at physiological temperature, complete annealing is reached only in the presence of NC, probably when the zinc fingers contact the TΨC/D loops.rnIn the present work, we have refined our model of the formation of the tRNA_3~(Lys)/PBS duplex. First, we show that annealing can initiate both from the single-stranded CCA 3'-end bases of the acceptor stem and from the bases in the TΨC stem. Secondly, by NMR and fluorescence spectroscopy, we have studied the complex between the NC protein and RNA hairpins that mimic the D and T arms of the tRNA_3~(Lys). Interestingly, the NC protein shows strong and specific binding to the D arm of tRNA_3~(Lys), which could explain the overall annealing mechanism.
机译:HIV-1逆转录酶使用宿主tRNA_3〜(Lys)作为合成负DNA链的引物。因此,病毒复制的第一个事件是tRNA与病毒RNA的5'UTR中的引物结合位点(PBS)退火。此事件需要主要的RNA重排,其伴随着病毒NC蛋白的陪伴。 NC与核酸的结合基本上是非特异性的,但是,已知NC选择性结合位于病毒RNA的5'区域中的发夹。在先前的研究中,使用NMR方法(通过控制温度来减慢反应速度),我们能够跟踪此RNA展开/重新折叠过程的细节并发现中间状态。我们发现退火在受体和TΨC茎之间的连接处开始,并且在生理温度下,只有在NC存在下才能完全退火,这可能是锌指接触TΨC/ D环的时候。 ,我们已经完善了tRNA_3〜(Lys)/ PBS双链体形成模型。首先,我们表明退火既可以从受体茎的单链CCA 3'-末端碱基开始,也可以从TΨC茎的碱基开始。其次,通过NMR和荧光光谱,我们研究了NC蛋白和RNA发夹之间的复合物,它们模仿tRNA_3〜(Lys)的D和T臂。有趣的是,NC蛋白与tRNA_3〜(Lys)的D臂具有强而特异性的结合,这可以解释整体退火机制。

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