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HIV-1病毒蛋白U(Vpu)促进新生逆转录病毒颗粒从质膜释放,并防止其发生内吞作用。

HIV-1 Vpu promotes release and prevents endocytosis of nascent retrovirus particles from the plasma membrane.

作者信息

Neil Stuart J D, Eastman Scott W, Jouvenet Nolwenn, Bieniasz Paul D

机构信息

Aaron Diamond AIDS Research Center, Laboratory of Retrovirology, Rockefeller University, New York, New York, USA.

出版信息

PLoS Pathog. 2006 May;2(5):e39. doi: 10.1371/journal.ppat.0020039. Epub 2006 May 12.

Abstract

The human immunodeficiency virus (HIV) type-1 viral protein U (Vpu) protein enhances the release of diverse retroviruses from human, but not monkey, cells and is thought to do so by ablating a dominant restriction to particle release. Here, we determined how Vpu expression affects the subcellular distribution of HIV-1 and murine leukemia virus (MLV) Gag proteins in human cells where Vpu is, or is not, required for efficient particle release. In HeLa cells, where Vpu enhances HIV-1 and MLV release approximately 10-fold, concentrations of HIV-1 Gag and MLV Gag fused to cyan fluorescent protein (CFP) were initially detected at the plasma membrane, but then accumulated over time in early and late endosomes. Endosomal accumulation of Gag-CFP was prevented by Vpu expression and, importantly, inhibition of plasma membrane to early endosome transport by dominant negative mutants of Rab5a, dynamin, and EPS-15. Additionally, accumulation of both HIV and MLV Gag in endosomes required a functional late-budding domain. In human HOS cells, where HIV-1 and MLV release was efficient even in the absence of Vpu, Gag proteins were localized predominantly at the plasma membrane, irrespective of Vpu expression or manipulation of endocytic transport. While these data indicated that Vpu inhibits nascent virion endocytosis, Vpu did not affect transferrin endocytosis. Moreover, inhibition of endocytosis did not restore Vpu-defective HIV-1 release in HeLa cells, but instead resulted in accumulation of mature virions that could be released from the cell surface by protease treatment. Thus, these findings suggest that a specific activity that is present in HeLa cells, but not in HOS cells, and is counteracted by Vpu, traps assembled retrovirus particles at the cell surface. This entrapment leads to subsequent endocytosis by a Rab5a- and clathrin-dependent mechanism and intracellular sequestration of virions in endosomes.

摘要

1型人类免疫缺陷病毒(HIV)的病毒蛋白U(Vpu)可增强多种逆转录病毒从人细胞而非猴细胞中的释放,据认为这是通过消除对病毒颗粒释放的主要限制来实现的。在此,我们确定了Vpu的表达如何影响HIV-1和鼠白血病病毒(MLV)的Gag蛋白在人细胞中的亚细胞分布,在这些细胞中,Vpu对于高效的病毒颗粒释放是必需的或非必需的。在HeLa细胞中,Vpu可将HIV-1和MLV的释放增强约10倍,最初在质膜上检测到与青色荧光蛋白(CFP)融合的HIV-1 Gag和MLV Gag的浓度,但随后随着时间的推移在早期和晚期内体中积累。Vpu的表达可阻止Gag-CFP在内体中的积累,重要的是,Rab5a、发动蛋白和EPS-15的显性负突变体对质膜到早期内体的转运的抑制也可阻止其积累。此外,HIV和MLV Gag在内体中的积累需要一个功能性的晚期出芽结构域。在人HOS细胞中,即使在没有Vpu的情况下,HIV-1和MLV的释放也很高效,Gag蛋白主要定位在质膜上,而与Vpu的表达或内吞转运的操作无关。虽然这些数据表明Vpu抑制新生病毒体的内吞作用,但Vpu并不影响转铁蛋白的内吞作用。此外,内吞作用的抑制并未恢复HeLa细胞中Vpu缺陷型HIV-1的释放,反而导致成熟病毒体的积累,这些病毒体可通过蛋白酶处理从细胞表面释放。因此,这些发现表明,HeLa细胞中存在但HOS细胞中不存在且被Vpu抵消的一种特定活性,会将组装好的逆转录病毒颗粒捕获在细胞表面。这种捕获会导致随后通过Rab5a和网格蛋白依赖性机制进行内吞作用,并使病毒体在内体中进行细胞内隔离。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0a2f/1464389/f4941e12c5c0/ppat.0020039.g001.jpg

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