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促进 HIV-1 组装中引物 tRNA(Lys3)与病毒 RNA 退火的因素。

Aspects of HIV-1 assembly that promote primer tRNA(Lys3) annealing to viral RNA.

机构信息

Lady Davis Institute for Medical Research and McGill AIDS Centre, Jewish General Hospital, Montreal, Quebec H3T1E2, Canada.

出版信息

Virus Res. 2012 Nov;169(2):340-8. doi: 10.1016/j.virusres.2012.06.001. Epub 2012 Jun 12.

Abstract

The major cellular tRNA(Lys) isoacceptors are tRNA(Lys1,2) and tRNA(Lys3). During the replication of human immunodeficiency virus 1 (HIV-1), tRNA(Lys3) is used to prime reverse transcription of the viral RNA genome into double-stranded DNA, which is then integrated into the host genome. The annealing of tRNA(Lys3) to 5'-terminal sequences of viral RNA is multi-staged, with an initial poor quality, cytoplasmic annealing promoted by the Gag precursor protein, followed by a more effective annealing imposed upon the Gag-annealed tRNA(Lys3) that occurs after viral protein processing, and that is facilitated by mature nucleocapsid (NCp7). The initial annealing by Gag is assisted by the architecture of an early viral assembly intermediate we term the "tRNA(Lys3) annealing complex" whose composition includes Gag, GagPol, viral RNA, lysyl-tRNA synthetase (LysRS), and the tRNA(Lys) isoacceptors. Our model proposes that the reverse transcriptase sequences in GagPol bind all tRNAs non-specifically, and that the cytoplasmic tRNA population to which GagPol is exposed is enriched in tRNA(Lys) isoacceptors due to a specific interaction between Gag and LysRS. We further predict a protein conformation within the annealing complex that not only promotes this tRNA(Lys) enrichment, but that also facilitates the transfer of tRNA(Lys3) from GagPol to the viral RNA where annealing is carried out by nucleocapsid sequences within Gag.

摘要

主要的细胞 tRNA(Lys)同工受体是 tRNA(Lys1,2)和 tRNA(Lys3)。在人类免疫缺陷病毒 1(HIV-1)的复制过程中,tRNA(Lys3)用于启动病毒 RNA 基因组的逆转录为双链 DNA,然后将其整合到宿主基因组中。tRNA(Lys3)与病毒 RNA 5'-末端序列的退火是多阶段的,最初的退火质量较差,由 Gag 前体蛋白促进细胞质退火,然后在病毒蛋白加工后发生更有效的退火,这是由成熟核衣壳(NCp7)促进的。Gag 的初始退火由我们称之为“tRNA(Lys3)退火复合物”的早期病毒组装中间体的结构辅助,其组成包括 Gag、GagPol、病毒 RNA、赖氨酸-tRNA 合成酶(LysRS)和 tRNA(Lys)同工受体。我们的模型提出,GagPol 中的逆转录酶序列非特异性地结合所有 tRNA,并且 GagPol 暴露的细胞质 tRNA 群体由于 Gag 和 LysRS 之间的特异性相互作用而富含 tRNA(Lys)同工受体。我们进一步预测了退火复合物内的一种蛋白质构象,该构象不仅促进了这种 tRNA(Lys)的富集,而且还促进了 tRNA(Lys3)从 GagPol 转移到核衣壳序列在 Gag 中进行退火的病毒 RNA。

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