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Characterization of the interaction between the HIV-1 Gag structural polyprotein and the cellular ribosomal protein L7 and its implication in viral nucleic acid remodeling

机译:HIV-1 GAG结构多蛋白与细胞核糖体蛋白L7之间的相互作用的表征及其在病毒核酸重塑中的含义

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Background In HIV-1 infected cells, the integrated viral DNA is transcribed by the host cell machinery to generate the full length HIV-1 RNA (FL RNA) that serves as mRNA encoding for the Gag and GagPol precursors. Virion formation is orchestrated by Gag, and the current view is that a specific interaction between newly made Gag molecules and FL RNA initiates the process. This in turn would cause FL RNA dimerization by the NC domain of Gag (GagNC). However the RNA chaperoning activity of unprocessed Gag is low as compared to the mature NC protein. This prompted us to search for GagNC co-factors. Results Here we report that RPL7, a major ribosomal protein involved in translation regulation, is a partner of Gag via its interaction with the NC domain. This interaction is mediated by the NC zinc fingers and the N- and C-termini of RPL7, respectively, but seems independent of RNA binding, Gag oligomerization and its interaction with the plasma membrane. Interestingly, RPL7 is shown for the first time to exhibit a potent DNA/RNA chaperone activity higher than that of Gag. In addition, Gag and RPL7 can function in concert to drive rapid nucleic acid hybridization. Conclusions Our results show that GagNC interacts with the ribosomal protein RPL7 endowed with nucleic acid chaperone activity, favoring the notion that RPL7 could be a Gag helper chaperoning factor possibly contributing to the start of Gag assembly.
机译:背景技术在HIV-1感染的细胞中,综合病毒DNA通过宿主细胞机械转录,以产生作为用于GAG和Gagpol前体的mRNA编码的全长HIV-1 RNA(FL RNA)。 VAG策划了病毒赛,目前的观点是新建的GAG分子和FL RNA之间的特异性相互作用引发了该过程。这反过来将导致GAG(GAGNC)的NC结构域进行FL RNA二聚体。然而,与成熟的NC蛋白相比,未加工的GAG的RNA伴随的RNA辅助活性低。这促使我们搜索GAGNC共同因素。结果在这里,我们认为RPL7是一个参与翻译调节的主要核糖体蛋白,是GAG通过其与NC结构域的相互作用的伴侣。该相互作用分别由NC锌指和RPL7的N-和C-Termini介导,但似乎与RNA结合,GAG寡聚化及其与质膜相互作用。有趣的是,RPL7首次出现才能表现出高于GAG的效率DNA / RNA伴侣活性。此外,GAG和RPL7可以在音乐会上起作用以驱动快速核酸杂交。结论我们的结果表明,GAGNC与核糖体蛋白RPL7赋予核酸伴侣活性的核糖体蛋白RPL7,优先考虑RPL7可以是可能导致GAG组件的开始的GAG助手伴侣辅助因子。

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