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Tetraspanins Another Piece in the HIV-1 Replication Puzzle

机译:四联蛋白HIV-1复制难题中的另一部分

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摘要

Despite the great research effort placed during the last decades in HIV-1 study, still some aspects of its replication cycle remain unknown. All this powerful research has succeeded in developing different drugs for AIDS treatment, but none of them can completely remove the virus from infected patients, who require life-long medication. The classical approach was focused on the study of virus particles as the main target, but increasing evidence highlights the importance of host cell proteins in HIV-1 cycle. In this context, tetraspanins have emerged as critical players in different steps of the viral infection cycle. Through their association with other molecules, including membrane receptors, cytoskeletal proteins, and signaling molecules, tetraspanins organize specialized membrane microdomains called tetraspanin-enriched microdomains (TEMs). Within these microdomains, several tetraspanins have been described to regulate HIV-1 entry, assembly, and transfer between cells. Interestingly, the importance of tetraspanins CD81 and CD63 in the early steps of viral replication has been recently pointed out. Indeed, CD81 can control the turnover of the HIV-1 restriction factor SAMHD1. This deoxynucleoside triphosphate triphosphohydrolase counteracts HIV-1 reverse transcription (RT) in resting cells via its dual function as dNTPase, catalyzing deoxynucleotide triphosphates into deoxynucleosides and inorganic triphosphate, and as exonuclease able to degrade single-stranded RNAs. SAMHD1 has also been related with the detection of viral nucleic acids, regulating the innate immune response and would promote viral latency. New evidences demonstrating the ability of CD81 to control SAMHD1 expression, and as a consequence, HIV-1 RT activity, highlight the importance of TEMs for viral replication. Here, we will briefly review how tetraspanins modulate HIV-1 infection, focusing on the latest findings that link TEMs to viral replication.
机译:尽管在最近几十年中对HIV-1的研究投入了大量精力,但其复制周期的某些方面仍然未知。所有这些有力的研究成功地开发了用于治疗艾滋病的不同药物,但是它们都无法从需要终身服药的感染患者中完全清除病毒。经典方法集中于研究病毒颗粒作为主要靶标,但是越来越多的证据凸显了宿主细胞蛋白在HIV-1循环中的重要性。在这种情况下,四跨膜蛋白已成为病毒感染周期不同步骤中的关键角色。通过与其他分子(包括膜受体,细胞骨架蛋白和信号传导分子)的结合,四跨膜蛋白组织了专门的膜微结构域,称为富四跨膜蛋白的微结构域(TEM)。在这些微区中,已经描述了几种四跨膜蛋白来调节HIV-1的进入,组装和在细胞之间转移。有趣的是,最近指出了四跨膜蛋白CD81和CD63在病毒复制的早期步骤中的重要性。实际上,CD81可以控制HIV-1限制因子SAMHD1的更新。该脱氧核苷三磷酸三磷酸水解酶通过其双重功能dNTPase来抵消静息细胞中的HIV-1逆转录(RT),将脱氧核苷酸三磷酸催化为脱氧核苷和无机三磷酸,以及能够降解单链RNA的核酸外切酶。 SAMHD1还与病毒核酸的检测,调节先天免疫应答并促进病毒潜伏期有关。新证据表明CD81具有控制SAMHD1表达的能力,因此具有HIV-1 RT活性,突出了TEM对病毒复制的重要性。在这里,我们将简要回顾四跨膜蛋白如何调节HIV-1感染,重点关注将TEM与病毒复制联系起来的最新发现。

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