Hung Chien-Hui, Thomas Laurel, Ruby Carl E, Atkins Katelyn M, Morris Nicholas P, Knight Zachary A, Scholz Isabel, Barklis Eric, Weinberg Andrew D, Shokat Kevan M, Thomas Gary
Vollum Institute, 3181 Southwest Sam Jackson Park Road, Portland, OR 97239, USA.
Cell Host Microbe. 2007 Apr 19;1(2):121-33. doi: 10.1016/j.chom.2007.03.004.
HIV-1 Nef, which is required for the efficient onset of AIDS, enhances viral replication and infectivity by exerting multiple effects on infected cells. Nef downregulates cell-surface MHC-I molecules by an uncharacterized PI3K pathway requiring the actions of two Nef motifs-EEEE(65) and PXXP(75). We report that the Nef EEEE(65) targeting motif enables Nef PXXP(75) to bind and activate a trans-Golgi network-localized Src family tyrosine kinase (SFK). The Nef/SFK complex then recruits and phosphorylates the tyrosine kinase ZAP-70, which binds class I PI3K to trigger MHC-I downregulation in primary CD4+ T cells. In promonocytic cells, Nef/SFK recruits the ZAP-70 homolog Syk to downregulate MHC-I, implicating this PI3K pathway in multiple HIV-1 reservoirs. Isoform-specific PI3K inhibitors repress MHC-I downregulation, identifying them as potential therapeutic agents to combat HIV-1. The discovery of this Nef-SFK-ZAP-70/Syk-PI3K signaling pathway explains the hierarchal role of the Nef motifs in effecting immunoevasion.
HIV-1 Nef是高效引发艾滋病所必需的,它通过对受感染细胞产生多种影响来增强病毒复制和传染性。Nef通过一种未知的PI3K途径下调细胞表面的MHC-I分子,该途径需要两个Nef基序EEEE(65)和PXXP(75)发挥作用。我们报告称,Nef的EEEE(65)靶向基序使Nef的PXXP(75)能够结合并激活反式高尔基体网络定位的Src家族酪氨酸激酶(SFK)。Nef/SFK复合物随后招募并磷酸化酪氨酸激酶ZAP-70,ZAP-70与I类PI3K结合,从而在原代CD4+ T细胞中触发MHC-I下调。在原单核细胞中,Nef/SFK招募ZAP-70的同源物Syk来下调MHC-I,这表明该PI3K途径在多个HIV-1储存库中发挥作用。亚型特异性PI3K抑制剂可抑制MHC-I下调,表明它们是对抗HIV-1的潜在治疗药物。这一Nef-SFK-ZAP-70/Syk-PI3K信号通路的发现解释了Nef基序在实现免疫逃逸中的层级作用。