Bächle Susanna M, Sauter Daniel, Sibitz Sabrina, Sandberg Johan K, Kirchhoff Frank, Moll Markus
Center for Infectious Medicine, Department of Medicine, Karolinska Institutet, Karolinska University Hospital Huddinge, 14186 Stockholm, Sweden.
Institute of Molecular Virology, Ulm University Medical Center, 89081 Ulm, Germany.
Sci Rep. 2015 Apr 15;5:9675. doi: 10.1038/srep09675.
The HIV-1 accessory protein Vpu is emerging as a critical factor for viral evasion from innate immunity. We have previously shown that the Vpu proteins of two HIV-1 group M subtype B strains (NL4-3 and BaL) down-regulate CD1d from the surface of infected dendritic cells (DCs) and inhibit their crosstalk with the innate invariant natural killer T (iNKT) cells. In the present study, we have investigated the ability of a comprehensive set of primate lentiviral Vpu proteins to interfere with CD1d-mediated immunity. We found that CD1d down-regulation is a conserved function of Vpu proteins from HIV-1 groups M, O and P as well as their direct precursors SIVcpzPtt and SIVgor. At the group M subtype level, subtype C Vpu proteins were significantly weaker CD1d antagonists than subtype B Vpu proteins. Functional characterization of different mutants and chimeras derived from active subtype B and inactive subtype C Vpu proteins revealed that residues in the cytoplasmic domain are important for CD1d down-regulation. Specifically, we identified a C-terminal APW motif characteristic for group M subtype B Vpu proteins necessary for interference with CD1d surface expression. These findings support the notion that Vpu plays an important role in lentiviral evasion from innate immunity.
HIV-1辅助蛋白Vpu正逐渐成为病毒逃避天然免疫的关键因素。我们之前已表明,两种HIV-1 M组B亚型毒株(NL4-3和BaL)的Vpu蛋白可下调感染的树突状细胞(DC)表面的CD1d,并抑制其与天然不变自然杀伤T(iNKT)细胞的相互作用。在本研究中,我们调查了一系列灵长类慢病毒Vpu蛋白干扰CD1d介导免疫的能力。我们发现,CD1d下调是HIV-1 M、O和P组及其直接前体SIVcpzPtt和SIVgor的Vpu蛋白的保守功能。在M组亚型水平上,C亚型Vpu蛋白作为CD1d拮抗剂的作用明显弱于B亚型Vpu蛋白。对源自活性B亚型和无活性C亚型Vpu蛋白的不同突变体和嵌合体进行功能表征发现,胞质结构域中的残基对CD1d下调很重要。具体而言,我们鉴定出M组B亚型Vpu蛋白特有的C末端APW基序,它是干扰CD1d表面表达所必需的。这些发现支持了Vpu在慢病毒逃避天然免疫中起重要作用这一观点。