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Role of the Nucleocapsid Domain in HIV-1 Gag Oligomerization and Trafficking to the Plasma Membrane: A Fluorescence Lifetime Imaging Microscopy Investigation

机译:Nucleocapsid域在HIV-1堵嘴低聚和贩运到质膜中的作用:荧光寿命成像显微镜研究。

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The Pr55 Gag of human immunodeficiency virus type 1 orchestrates viral particle assembly in producer cells, which requires the genomic RNA and a lipid membrane as scaffolding platforms. The nucleocapsid (NC) domain with its two invariant CCHC zinc fingers flanked by unfolded basic sequences is thought to direct genomic RNA selection, dimerization and packaging during virus assembly. To further investigate the role of NC domain, we analyzed the assembly of Gag with deletions in the NC domain in parallel with that of wild-type Gag using fluorescence lifetime imaging microscopy combined with Forster resonance energy transfer in He La cells. We found that, upon binding to nucleic acids, the NC domain promotes the formation of compact Gag oligomers in the cytoplasm. Moreover, the intracellular distribution of the population of oligomers further suggests that oligomers progressively assemble during their trafficking toward the plasma membrane (PM), but with no dramatic changes in their compact arrangement. This ultimately results in the accumulation at the PM of closely packed Gag oligomers that likely arrange in hexameric lattices, as revealed by the perfect match between the experimental Forster resonance energy transfer value and the one calculated from the structural model of Gag in immature viruses. The distal finger and flanking basic sequences, but not the proximal finger, appear to be essential for Gag oligomer compaction and membrane binding. Moreover, the full NC domain was found to be instrumental in the kinetics of Gag oligomerization and intracellular trafficking. These findings further highlight the key roles played by the NC domain in virus assembly. (C) 2015 Elsevier Ltd. All rights reserved.
机译:人类免疫缺陷病毒1型的Pr55 Gag可以协调生产细胞中的病毒颗粒装配,这需要基因组RNA和脂质膜作为支架平台。人们认为,带有两个不变CCHC锌指的核壳(NC)结构域侧翼为未折叠的基本序列,可指导病毒组装过程中基因组RNA的选择,二聚化和包装。为了进一步研究NC域的作用,我们使用荧光寿命成像显微镜结合Forster共振能量转移在He La细胞中分析了与野生型Gag平行的NC域中缺失的Gag的装配。我们发现,与核酸结合后,NC结构域促进了细胞质中紧密的Gag低聚物的形成。此外,低聚物群体的细胞内分布进一步表明,低聚物在其向质膜(PM)的运输过程中逐渐聚集,但其紧密排列没有显着变化。这最终导致紧密堆积的Gag低聚物在PM处的积累,这些低聚物可能排列在六聚体晶格中,正如实验Forster共振能量转移值与未成熟病毒中根据Gag的结构模型计算得出的值之间的完美匹配所揭示的那样。远端手指和侧翼的基本序列,而不是近端手指,似乎对Gag低聚物的紧实和膜结合至关重要。此外,发现完整的NC结构域在Gag寡聚和细胞内运输的动力学中起重要作用。这些发现进一步强调了NC域在病毒装配中所起的关键作用。 (C)2015 Elsevier Ltd.保留所有权利。

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