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Human Endogenous Retrovirus K Gag Coassembles with HIV-1 Gag and Reduces the Release Efficiency and Infectivity of HIV-1

机译:人类内源性逆转录病毒K Gag与HIV-1 Gag组装在一起降低了HIV-1的释放效率和传染性

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摘要

Human endogenous retroviruses (HERVs), which are remnants of ancestral retroviruses integrated into the human genome, are defective in viral replication. Because activation of HERV-K and coexpression of this virus with HIV-1 have been observed during HIV-1 infection, it is conceivable that HERV-K could affect HIV-1 replication, either by competition or by cooperation, in cells expressing both viruses. In this study, we found that the release efficiency of HIV-1 Gag was 3-fold reduced upon overexpression of HERV-KCON Gag. In addition, we observed that in cells expressing Gag proteins of both viruses, HERV-KCON Gag colocalized with HIV-1 Gag at the plasma membrane. Furthermore, HERV-KCON Gag was found to coassemble with HIV-1 Gag, as demonstrated by (i) processing of HERV-KCON Gag by HIV-1 protease in virions, (ii) coimmunoprecipitation of virion-associated HERV-KCON Gag with HIV-1 Gag, and (iii) rescue of a late-domain-defective HERV-KCON Gag by wild-type (WT) HIV-1 Gag. Myristylation-deficient HERV-KCON Gag localized to nuclei, suggesting cryptic nuclear trafficking of HERV-K Gag. Notably, unlike WT HERV-KCON Gag, HIV-1 Gag failed to rescue myristylation-deficient HERV-KCON Gag to the plasma membrane. Efficient colocalization and coassembly of HIV-1 Gag and HERV-K Gag also required nucleocapsid (NC). These results provide evidence that HIV-1 Gag heteromultimerizes with HERV-K Gag at the plasma membrane, presumably through NC-RNA interaction. Intriguingly, HERV-K Gag overexpression reduced not only HIV-1 release efficiency but also HIV-1 infectivity in a myristylation- and NC-dependent manner. Altogether, these results indicate that Gag proteins of endogenous retroviruses can coassemble with HIV-1 Gag and modulate the late phase of HIV-1 replication.
机译:人内源性逆转录病毒(HERV)是整合到人基因组中的祖传逆转录病毒的残留,在病毒复制方面存在缺陷。因为在HIV-1感染期间已观察到HERV-K的激活以及该病毒与HIV-1的共表达,所以可以想象,HERV-K可以通过竞争或合作在表达两种病毒的细胞中影响HIV-1的复制。 。在这项研究中,我们发现在HERV-KCON Gag过表达后,HIV-1 Gag的释放效率降低了3倍。此外,我们观察到在表达两种病毒的Gag蛋白的细胞中,HERV-KCON Gag与HIV-1 Gag共定位在质膜上。此外,已发现HERV-KCON Gag与HIV-1 Gag共装配,这表现为(i)HIV-1蛋白酶在病毒体中处理HERV-KCON Gag,(ii)与病毒体相关的HERV-KCON Gag与HIV共免疫沉淀-1 Gag,以及(iii)通过野生型(WT)HIV-1 Gag挽救晚域缺陷的HERV-KCON Gag。肉豆蔻基化缺陷的HERV-KCON Gag定位于细胞核,表明HERV-K Gag的隐核运输。值得注意的是,与WT HERV-KCON Gag不同,HIV-1 Gag无法将肉豆蔻酸缺乏的HERV-KCON Gag挽救到质膜上。 HIV-1 Gag和HERV-K Gag的有效共定位和共装配也需要核衣壳(NC)。这些结果提供了证据,证明HIV-1 Gag与质膜上的HERV-K Gag异源多聚,大概是通过NC-RNA相互作用。有趣的是,HERV-K Gag过表达不仅以肉豆蔻酸化和依赖NC的方式降低了HIV-1的释放效率,而且降低了HIV-1的感染性。总而言之,这些结果表明内源性逆转录病毒的Gag蛋白可以与HIV-1 Gag共装配并调节HIV-1复制的后期。

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