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人类免疫缺陷病毒1型颗粒释放时,Tetherin限制活性的抑制与Vpu在反式高尔基体网络中的定位相关。

Suppression of Tetherin-restricting activity upon human immunodeficiency virus type 1 particle release correlates with localization of Vpu in the trans-Golgi network.

作者信息

Dubé Mathieu, Roy Bibhuti Bhusan, Guiot-Guillain Pierre, Mercier Johanne, Binette Julie, Leung Grace, Cohen Eric A

机构信息

Laboratory of Human Retrovirology, Institut de Recherches Cliniques de Montréal, Immunology, Université de Montréal, Montreal, Québec, Canada.

出版信息

J Virol. 2009 May;83(9):4574-90. doi: 10.1128/JVI.01800-08. Epub 2009 Feb 25.

Abstract

Vpu promotes the efficient release of human immunodeficiency virus type 1 (HIV-1) by overcoming the activity of tetherin, a host cell restriction factor that retains assembled virions at the cell surface. In this study, we analyzed the intracellular localization and trafficking of subtype B Vpu in HIV-1-producing human cells. We found that mutations of conserved positively charged residues (R30 and K31) within the putative overlapping tyrosine- and dileucine-based sorting motifs of the Vpu hinge region affected both the accumulation of the protein in the trans-Golgi network (TGN) and its efficient delivery to late endosomal degradative compartments. A functional characterization of this mutant revealed that the mislocalization of Vpu from the TGN correlated with an attenuation of HIV-1 release. Interestingly, clathrin light chain small interfering RNA-directed disruption of Vpu trafficking from the TGN to the endosomal system slightly stimulated Vpu-mediated HIV-1 release and completely restored the activity of the Vpu R30A,K31A mutant. An analysis of the C-terminal deletion mutants of Vpu identified an additional determinant in the second helical structure of the protein, which regulated TGN retention/localization, and further revealed the functional importance of Vpu localization in the TGN. Finally, we show that a large fraction of Vpu colocalizes with tetherin in the TGN and provide evidence that the degree of Vpu colocalization with tetherin in the TGN is important for efficient HIV-1 release. Taken together, our results reveal that Vpu traffics between the TGN and the endosomal system and suggest that the proper distribution of Vpu in the TGN is critical to overcome the restricting activity of tetherin on HIV-1 release.

摘要

Vpu通过克服连接蛋白的活性来促进1型人类免疫缺陷病毒(HIV-1)的有效释放,连接蛋白是一种宿主细胞限制因子,可将组装好的病毒体保留在细胞表面。在本研究中,我们分析了HIV-1产生的人类细胞中B亚型Vpu的细胞内定位和运输。我们发现,Vpu铰链区假定的重叠酪氨酸和双亮氨酸基分选基序内保守的带正电荷残基(R30和K31)的突变,既影响了该蛋白在反式高尔基体网络(TGN)中的积累,也影响了其向晚期内体降解区室的有效运输。对该突变体的功能表征表明,Vpu从TGN的错误定位与HIV-1释放的减弱相关。有趣的是,网格蛋白轻链小干扰RNA介导的Vpu从TGN到内体系统运输的破坏,轻微刺激了Vpu介导的HIV-1释放,并完全恢复了Vpu R30A、K31A突变体的活性。对Vpu C末端缺失突变体的分析确定了该蛋白第二个螺旋结构中的另一个决定因素,该因素调节TGN保留/定位,并进一步揭示了Vpu在TGN中定位的功能重要性。最后,我们表明很大一部分Vpu与TGN中的连接蛋白共定位,并提供证据表明Vpu与TGN中连接蛋白的共定位程度对于HIV-1的有效释放很重要。综上所述,我们的结果表明Vpu在TGN和内体系统之间运输,并表明Vpu在TGN中的正确分布对于克服连接蛋白对HIV-1释放的限制活性至关重要。

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