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An interdomain binding site on HIV-1 Nef interacts with PACS-1 and PACS-2 on endosomes to down-regulate MHC-I

机译:HIV-1 Nef上的域间结合位点与内体上的PACS-1和PACS-2相互作用以下调MHC-1

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摘要

The human immunodeficiency virus type 1 (HIV-1) accessory protein Nef directs virus escape from immune surveillance by subverting host cell intracellular signaling and membrane traffic to down-regulate cell-surface major histocompatibility complex class I (MHC-I). The interaction of Nef with the sorting proteins PACS-1 and PACS-2 mediates key signaling and trafficking steps required for Nef-mediated MHC-I down-regulation. Little is known, however, about the molecular basis underlying the Nef–PACS interaction. Here we identify the sites on Nef and the PACS proteins required for their interaction and describe the consequences of disrupting this interaction for Nef action. A previously unidentified cargo subsite on PACS-1 and PACS-2 interacted with a bipartite site on Nef formed by the EEEE65 acidic cluster on the N-terminal domain and W113 in the core domain. Mutation of these sites prevented the interaction between Nef and the PACS proteins on Rab5 (PACS-2 and PACS-1)- or Rab7 (PACS-1)-positive endosomes as determined by bimolecular fluorescence complementation and caused a Nef mutant defective in PACS binding to localize to distorted endosomal compartments. Consequently, disruption of the Nef–PACS interaction repressed Nef-induced MHC-I down-regulation in peripheral blood mononuclear cells. Our results provide insight into the molecular basis of Nef action and suggest new strategies to combat HIV-1.
机译:人类免疫缺陷病毒1型(HIV-1)辅助蛋白Nef通过破坏宿主细胞的细胞内信号传导和膜运输来下调I类细胞表面主要组织相容性复合体(MHC-1),从而指导病毒从免疫监视中逃脱。 Nef与分选蛋白PACS-1和PACS-2的相互作用介导了Nef介导的MHC-1下调所需的关键信号传导和运输步骤。然而,关于Nef-PACS相互作用的分子基础知之甚少。在这里,我们确定了Nef和PACS蛋白质相互作用所需的位点,并描述了破坏该相互作用对Nef作用的后果。 PACS-1和PACS-2上一个以前未识别的货物子位点与Nf上的一个双位位点相互作用,该位点由N端域上的EEEE65酸性簇和核心域中的W113形成。这些位点的突变阻止了Nef与Rab5(PACS-2和PACS-1)或Rab7(PACS-1)阳性内体上的PACS蛋白之间的相互作用,这是通过双分子荧光互补确定的,并导致了Nef突变体在PACS结合中的缺陷定位于畸形的内体区室。因此,Nef-PACS相互作用的破坏抑制了外周血单核细胞中Nef诱导的MHC-1下调。我们的结果提供了对Nef行动的分子基础的见解,并提出了对抗HIV-1的新策略。

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