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Assembly and Replication of HIV-1 in T Cells with Low Levels of Phosphatidylinositol-(45)-Bisphosphate

机译:磷脂酰肌醇-(45)-双磷酸水平低的T细胞中HIV-1的组装和复制

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摘要

HIV-1 Gag assembles into virus particles predominantly at the plasma membrane (PM). Previously, we observed that phosphatidylinositol-(4,5)-bisphosphate [PI(4,5)P2] is essential for Gag binding to the plasma membrane and virus release in HeLa cells. In the current study, we found that PI(4,5)P2 also facilitates Gag binding to the PM and efficient virus release in T cells. Notably, serial passage of HIV-1 in an A3.01 clone that expresses polyphosphoinositide 5-phosphatase IV (5ptaseIV), which depletes cellular PI(4,5)P2, yielded an adapted mutant with a Leu-to-Arg change at matrix residue 74 (74LR). Virus replication in T cells expressing 5ptaseIV was accelerated by the 74LR mutation relative to replication of wild type HIV-1 (WT). This accelerated replication of the 74LR mutant was not due to improved virus release. In control T cells, the 74LR mutant releases virus less efficiently than does the WT, whereas in cells expressing 5ptaseIV, the WT and the 74LR mutant are similarly inefficient in virus release. Unexpectedly, we found that the 74LR mutation increased virus infectivity and compensated for the inefficient virus release. Altogether, these results indicate that PI(4,5)P2 is essential for Gag-membrane binding, targeting of Gag to the PM, and efficient virus release in T cells, which in turn likely promotes efficient virus spread in T cell cultures. In T cells with low PI(4,5)P2 levels, however, the reduced virus particle production can be compensated for by a mutation that enhances virus infectivity.
机译:HIV-1 Gag主要在质膜(PM)处组装成病毒颗粒。以前,我们观察到磷脂酰肌醇-(4,5)-双磷酸[PI(4,5)P2]对于Gag结合到质膜和HeLa细胞中的病毒释放至关重要。在当前的研究中,我们发现PI(4,5)P2还促进Gag与PM的结合以及T细胞中病毒的有效释放。值得注意的是,HIV-1在A3.01克隆中的连续传代,该克隆表达了消耗细胞PI(4,5)P2的多磷酸肌醇5-磷酸酶IV(5ptaseIV),产生了一种在基质上具有Leu-Arg改变的适应突变体残留物74(74LR)。相对于野生型HIV-1(WT)的复制,74LR突变促进了表达5ptaseIV的T细胞中的病毒复制。 74LR突变体的这种加速复制不是由于病毒释放的改善。在对照T细胞中,74LR突变体释放病毒的效率比WT低,而在表达5ptaseIV的细胞中,WT和74LR突变体在病毒释放中的效率同样较低。出乎意料的是,我们发现74LR突变增加了病毒的感染性,并弥补了无效的病毒释放。总而言之,这些结果表明PI(4,5)P2对于Gag膜的结合,Gag靶向PM以及T细胞中有效的病毒释放是必不可少的,这反过来又可能促进病毒在T细胞培养物中的有效传播。然而,在具有低PI(4,5)P2水平的T细胞中,减少的病毒颗粒产生可以通过增强病毒感染性的突变来补偿。

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