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Single molecule localisation microscopy reveals how HIV-1 Gag proteins sense membrane virus assembly sites in living host CD4 T cells

机译:单分子定位显微镜揭示了HIV-1 Gag蛋白如何感测活宿主CD4 T细胞中的膜病毒装配位点

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摘要

Monitoring virus assembly at the nanoscale in host cells remains a major challenge. Human immunodeficiency virus type 1 (HIV-1) components are addressed to the plasma membrane where they assemble to form spherical particles of 100 nm in diameter. Interestingly, HIV-1 Gag protein expression alone is sufficient to produce virus-like particles (VLPs) that resemble the immature virus. Here, we monitored VLP formation at the plasma membrane of host CD4+ T cells using a newly developed workflow allowing the analysis of long duration recordings of single-molecule Gag protein localisation and movement. Comparison of Gag assembling platforms in CD4+ T cells expressing wild type or assembly-defective Gag mutant proteins showed that VLP formation lasts roughly 15 minutes with an assembly time of 5 minutes. Trapping energy maps, built from membrane associated Gag protein movements, showed that one third of the assembling energy is due to direct Gag capsid-capsid interaction while the remaining two thirds require the nucleocapsid-RNA interactions. Finally, we show that the viral RNA genome does not increase the attraction of Gag at the membrane towards the assembling site but rather acts as a spatiotemporal coordinator of the membrane assembly process.
机译:监测宿主细胞中纳米级的病毒组装仍然是一项重大挑战。人类免疫缺陷病毒1型(HIV-1)成分被定位到质膜上,在那里它们组装形成直径100 nm的球形颗粒。有趣的是,仅HIV-1 Gag蛋白表达就足以产生类似于未成熟病毒的病毒样颗粒(VLP)。在这里,我们使用新开发的工作流程监控宿主CD4 + T细胞质膜上的VLP形成,该工作流程可以分析单分子Gag蛋白的定位和运动的长时间记录。表达野生型或组装缺陷型Gag突变蛋白的CD4 + T细胞中Gag组装平台的比较表明,VLP形成持续约15分钟,组装时间为5分钟。由膜相关的Gag蛋白质运动建立的诱捕能量图显示,组装能的三分之一是由于Gag衣壳与衣壳的直接相互作用,而其余三分之二则需要核衣壳与RNA的相互作用。最后,我们表明病毒RNA基因组不会增加Gag在膜上向组装位点的吸引力,而是充当膜组装过程的时空协调者。

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