Lady Davis Institute for Medical Research and McGill AIDS Centre, Jewish General Hospital, Montreal, Quebec, Canada.
J Virol. 2012 Dec;86(24):13272-80. doi: 10.1128/JVI.01993-12. Epub 2012 Sep 26.
RNA helicase A (RHA) promotes multiple steps of HIV-1 RNA metabolism during viral replication, including transcription, translation, and the annealing of primer tRNA(3)(Lys) to the viral RNA. RHA is a member of the DExH subclass of RNA helicases that uniquely contains two double-stranded RNA binding domains (dsRBDs) at its N terminus. Here, we performed a genome-wide analysis of the interaction of RHA with HIV-1 RNA both in vitro, using fluorescence polarization, and during viral replication, using an RNA-protein coprecipitation assay. In vitro, RHA binds to all the isolated regions of the HIV-1 RNA genome tested, with K(d) (equilibrium dissociation constant) values ranging from 44 to 178 nM. In contrast, during viral replication, RNA-protein coprecipitation assays detected only a major interaction of RHA with the 5'-untranslated region (5'-UTR) and a minor interaction with the Rev response element (RRE) of HIV-1 RNA. Since RHA does not associate well with all the highly structured regions of HIV-1 RNA tested in vivo, the results suggest that other viral or cellular factors not present in vitro may modulate the direct interaction of RHA with HIV-1 RNA during virus replication. Nevertheless, a role for duplex RNA as a target for RHA binding in vivo is suggested by the fact that the deletion of either one or both dsRBDs eliminates the in vivo interaction of RHA with HIV-1 RNA. Furthermore, these mutant RHAs do not promote the in vivo annealing of tRNA(3)(Lys) to viral RNA, nor are they packaged into virions, demonstrating that the dsRBDs are essential for the role of RHA in HIV-1 replication.
RNA 解旋酶 A (RHA) 在病毒复制过程中促进 HIV-1 RNA 代谢的多个步骤,包括转录、翻译和引物 tRNA(3)(Lys)与病毒 RNA 的退火。RHA 是 DExH 类 RNA 解旋酶的成员,其 N 端独特地包含两个双链 RNA 结合结构域 (dsRBD)。在这里,我们使用荧光偏振法在体外和 RNA-蛋白共沉淀测定法在病毒复制过程中进行了 HIV-1 RNA 与 RHA 相互作用的全基因组分析。在体外,RHA 与所有测试的 HIV-1 RNA 基因组的分离区域结合,K(d)(平衡解离常数)值范围从 44 到 178 nM。相比之下,在病毒复制过程中,RNA-蛋白共沉淀测定仅检测到 RHA 与 HIV-1 RNA 的 5'-非翻译区 (5'-UTR) 的主要相互作用和与 Rev 反应元件 (RRE) 的次要相互作用。由于 RHA 与体内测试的所有高度结构区域的 HIV-1 RNA 结合不佳,结果表明,体外不存在的其他病毒或细胞因子可能会调节病毒复制过程中 RHA 与 HIV-1 RNA 的直接相互作用。然而,dsRBD 的事实表明,双链 RNA 作为 RHA 体内结合的靶标起作用,即缺失一个或两个 dsRBD 都会消除 RHA 与 HIV-1 RNA 的体内相互作用。此外,这些突变型 RHAs 不会促进 tRNA(3)(Lys)在体内与病毒 RNA 的退火,也不会被包装到病毒粒子中,表明 dsRBD 对于 RHA 在 HIV-1 复制中的作用是必不可少的。