Schaefer Todd M, Bell Ian, Pfeifer Melanie E, Ghosh Mimi, Trible Ronald P, Fuller Craig L, Ashman Claire, Reinhart Todd A
Department of Infectious Diseases and Microbiology, Graduate School of Public Health, University of Pittsburgh, Pennsylvania 15261, USA.
Virology. 2002 Oct 10;302(1):106-22. doi: 10.1006/viro.2002.1628.
The Nef protein of Simian immunodeficiency virus (SIV) associates with multiple T lymphocyte signaling proteins, including the T cell receptor (TCR) zeta chain. We demonstrate here that these interactions are conserved and highly specific. Nefs derived from genetically diverse strains of SIV (SIV(mac)239, SIV(smm)PBj, and SIV(smm)DeltaB670) all interacted with TCR zeta on two separate domains, referred to as SIV Nef interaction domains (SNIDs), as examined in both yeast two-hybrid and glutathione-S-transferase (GST) fusion protein pull-down assays. Multiple HIV-1 Nefs were examined and none interacted with TCR zeta. In contrast, HIV-2(UC1) Nef, similar to SIV Nef, interacted with TCR zeta on two domains, although only the SIV Nefs potently reduced cell-surface expression of the TCR/CD3 complex in T cells. In addition, we examined the abilities of SIV, HIV-2, and HIV-1 Nefs to interact with the cytoplasmic domains of other signaling molecules including CD3epsilon, CD3gamma, and FcepsilonRIgamma, which also contain YxxL motifs, and determined that SIV and HIV-2 Nefs interacted only with TCR zeta, whereas HIV-1 Nef did not interact with any signal-transducing cytoplasmic domain examined. Last, to gain further insight into the mechanism by which Nef down-modulates the TCR/CD3 complex, we mutated or deleted regions on Nef involved in endocytosis, localization of Nef to the plasma membrane, interaction with cellular kinases, or that were conserved among multiple strains of SIV. Mutation of the myristoylation site and a conserved region surrounding a putative PKC phosphorylation site were the only mutations that abrogated Nef-mediated down-modulation of the TCR/CD3 complex. These findings demonstrate there is a spectrum of associations between SIV, HIV-2, and HIV-1 Nefs, and the TCR/CD3 complex, and suggest that down-modulation of the TCR/CD3 complex occurs via association with subsets of cellular proteins that are different from those involved in CD4 and CD28 down-modulation.
猴免疫缺陷病毒(SIV)的Nef蛋白与多种T淋巴细胞信号蛋白相关联,包括T细胞受体(TCR)ζ链。我们在此证明,这些相互作用是保守且高度特异性的。在酵母双杂交和谷胱甘肽-S-转移酶(GST)融合蛋白下拉实验中检测发现,源自基因多样化的SIV毒株(SIV(mac)239、SIV(smm)PBj和SIV(smm)DeltaB670)的Nef蛋白均在两个独立的结构域上与TCR ζ相互作用,这两个结构域被称为SIV Nef相互作用结构域(SNID)。对多种HIV-1 Nef蛋白进行检测,发现它们均不与TCR ζ相互作用。相比之下,HIV-2(UC1)Nef蛋白与SIV Nef蛋白类似,在两个结构域上与TCR ζ相互作用,不过只有SIV Nef蛋白能有效降低T细胞中TCR/CD3复合物的细胞表面表达。此外,我们检测了SIV、HIV-2和HIV-1 Nef蛋白与其他信号分子胞质结构域(包括CD3ε、CD3γ和FcepsilonRIγ,它们也含有YxxL基序)相互作用的能力,确定SIV和HIV-2 Nef蛋白仅与TCR ζ相互作用,而HIV-1 Nef蛋白不与所检测的任何信号转导胞质结构域相互作用。最后,为了更深入了解Nef蛋白下调TCR/CD3复合物的机制,我们对Nef蛋白上参与内吞作用、Nef蛋白定位于质膜、与细胞激酶相互作用或在多种SIV毒株中保守的区域进行了突变或缺失。肉豆蔻酰化位点和假定的蛋白激酶C磷酸化位点周围的保守区域的突变是唯一能消除Nef蛋白介导的TCR/CD3复合物下调作用的突变。这些发现表明,SIV、HIV-2和HIV-1 Nef蛋白与TCR/CD3复合物之间存在一系列关联,并提示TCR/CD3复合物的下调是通过与不同于参与CD4和CD28下调的细胞蛋白亚群相互作用而发生的。