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HIV-1病毒蛋白U通过衔接蛋白1介导的排除作用,使其不参与病毒组装位点,从而拮抗CD317/束缚素。

HIV-1 Vpu Antagonizes CD317/Tetherin by Adaptor Protein-1-Mediated Exclusion from Virus Assembly Sites.

作者信息

Pujol François M, Laketa Vibor, Schmidt Florian, Mukenhirn Markus, Müller Barbara, Boulant Steeve, Grimm Dirk, Keppler Oliver T, Fackler Oliver T

机构信息

Department of Infectious Diseases, Integrative Virology, Heidelberg University Hospital, Heidelberg, Germany.

Department of Infectious Diseases, Virology, Heidelberg University Hospital, Heidelberg, Germany.

出版信息

J Virol. 2016 Jul 11;90(15):6709-6723. doi: 10.1128/JVI.00504-16. Print 2016 Aug 1.

Abstract

UNLABELLED

The host cell restriction factor CD317/tetherin traps virions at the surface of producer cells to prevent their release. The HIV-1 accessory protein Vpu antagonizes this restriction. Vpu reduces the cell surface density of the restriction factor and targets it for degradation; however, these activities are dispensable for enhancing particle release. Instead, Vpu has been suggested to antagonize CD317/tetherin by preventing recycling of internalized CD317/tetherin to the cell surface, blocking anterograde transport of newly synthesized CD317/tetherin, and/or displacing the restriction factor from virus assembly sites at the plasma membrane. At the molecular level, antagonism relies on the physical interaction of Vpu with CD317/tetherin. Recent findings suggested that phosphorylation of a diserine motif enables Vpu to bind to adaptor protein 1 (AP-1) trafficking complexes via two independent interaction motifs and to couple CD317/tetherin to the endocytic machinery. Here, we used a panel of Vpu proteins with specific mutations in individual interaction motifs to define which interactions are required for antagonism of CD317/tetherin. Impairing recycling or anterograde transport of CD317/tetherin to the plasma membrane was insufficient for antagonism. In contrast, excluding CD317/tetherin from HIV-1 assembly sites depended on Vpu motifs for interaction with AP-1 and CD317/tetherin and correlated with antagonism of the particle release restriction. Consistently, interference with AP-1 function or its expression blocked these Vpu activities. Our results define displacement from HIV-1 assembly sites as active principle of CD317/tetherin antagonism by Vpu and support a role of tripartite complexes between Vpu, AP-1, and CD317/tetherin in this process.

IMPORTANCE

CD317/tetherin poses an intrinsic barrier to human immunodeficiency virus type 1 (HIV-1) replication in human cells by trapping virus particles at the surface of producer cells and thereby preventing their release. The viral protein Vpu antagonizes this restriction, and molecular interactions with the restriction factor and adaptor protein complex 1 (AP-1) were suggested to mediate this activity. Vpu modulates intracellular trafficking of CD317/tetherin and excludes the restriction factor from HIV-1 assembly sites at the plasma membrane, but the relative contribution of these effects to antagonism remain elusive. Using a panel of Vpu mutants, as well as interference with AP-1 function and expression, we show here that Vpu antagonizes CD317/tetherin by blocking its recruitment to viral assembly sites in an AP-1-dependent manner. These results refine our understanding of the molecular mechanisms of CD317/tetherin antagonism and suggest complexes of Vpu with the restriction factor and AP-1 as targets for potential therapeutic intervention.

摘要

未标记

宿主细胞限制因子CD317/连接蛋白在产生病毒的细胞表面捕获病毒粒子以阻止其释放。HIV-1辅助蛋白Vpu拮抗这种限制作用。Vpu降低了限制因子的细胞表面密度并将其作为降解靶点;然而,这些活性对于增强病毒粒子释放并非必需。相反,有人提出Vpu通过阻止内化的CD317/连接蛋白再循环至细胞表面、阻断新合成的CD317/连接蛋白的顺行转运和/或从质膜上的病毒组装位点取代限制因子来拮抗CD317/连接蛋白。在分子水平上,拮抗作用依赖于Vpu与CD317/连接蛋白的物理相互作用。最近的研究结果表明,双丝氨酸基序的磷酸化使Vpu能够通过两个独立的相互作用基序与衔接蛋白1(AP-1)转运复合物结合,并将CD317/连接蛋白与内吞机制偶联起来。在这里,我们使用了一组在各个相互作用基序中具有特定突变的Vpu蛋白,以确定拮抗CD317/连接蛋白需要哪些相互作用。损害CD317/连接蛋白向质膜的再循环或顺行转运不足以产生拮抗作用。相反,将CD317/连接蛋白排除在HIV-1组装位点之外依赖于Vpu与AP-1和CD317/连接蛋白相互作用的基序,并与病毒粒子释放限制的拮抗作用相关。一致的是,干扰AP-1功能或其表达会阻断这些Vpu活性。我们的结果将从HIV-1组装位点的取代定义为Vpu拮抗CD317/连接蛋白的活性原理,并支持Vpu、AP-1和CD317/连接蛋白之间的三方复合物在此过程中的作用。

重要性

CD317/连接蛋白通过在产生病毒的细胞表面捕获病毒颗粒从而阻止其释放,对人类免疫缺陷病毒1型(HIV-1)在人类细胞中的复制构成内在障碍。病毒蛋白Vpu拮抗这种限制作用,有人提出与限制因子和衔接蛋白复合物1(AP-1)的分子相互作用介导了这种活性。Vpu调节CD317/连接蛋白的细胞内运输,并将限制因子排除在质膜上的HIV-1组装位点之外,但这些效应在拮抗作用中的相对贡献仍不清楚。使用一组Vpu突变体,以及干扰AP-1功能和表达,我们在此表明Vpu通过以AP-1依赖的方式阻止其募集到病毒组装位点来拮抗CD317/连接蛋白。这些结果完善了我们对CD317/连接蛋白拮抗分子机制的理解,并表明Vpu与限制因子和AP-1的复合物是潜在治疗干预的靶点。

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