Division of Toxicology, Central Drug Research Institute (Council of Scientific & Industrial Research), BS-10/1, Sector-10 Jankipuram Extension, Uttar Pradesh, India.
PLoS One. 2013 Jun 14;8(6):e67586. doi: 10.1371/journal.pone.0067586. Print 2013.
FasL mediated preferential apoptosis of bystander CTLs while protection of infected CD4(+)T cells remains one of the hallmarks of immune evasion during HIV infection. The property of infected host cells to evade cell-autonomous apoptosis emanates from ability of HIV-1Nef-protein to physically interact with ASK-1 and thereby inhibit its enzymatic activity. The specific domains of HIV-1Nef through which it may interact with ASK1 and thereby impair the ASK1 activity remain unidentified so far and represent a major challenge towards developing clear understanding about the dynamics of this interaction. Using mammalian two hybrid screen in association with site directed mutagenesis and competitive inhibitor peptides, we identified constituent minimal essential domain (152 DEVGEANN 159) through which HIV-1Nef interacts with ASK1 and inhibits its function. Furthermore our study also unravels a novel alternate mechanism underlying HIV-1 Nef mediated ASK1 functional modulation, wherein by potentiating the inhibitory ser(967) phosphorylation of ASK1, HIV-1Nef negatively modulated ASK1 function.
FasL 介导旁观者 CTL 的优先凋亡,而保护感染的 CD4(+)T 细胞仍然是 HIV 感染期间免疫逃避的标志之一。感染宿主细胞逃避细胞自主凋亡的特性源于 HIV-1Nef 蛋白与 ASK-1 物理相互作用的能力,从而抑制其酶活性。HIV-1Nef 可能与 ASK1 相互作用并因此损害 ASK1 活性的特定结构域迄今仍未确定,这是对发展对这种相互作用动态的清晰理解的重大挑战。通过使用哺乳动物双杂交筛选结合定点突变和竞争性抑制剂肽,我们确定了 HIV-1Nef 与 ASK1 相互作用并抑制其功能的最小必需结构域(152 DEVGEANN 159)。此外,我们的研究还揭示了 HIV-1 Nef 介导的 ASK1 功能调节的一种新的替代机制,其中通过增强 ASK1 的抑制性丝氨酸(967)磷酸化,HIV-1Nef 负调节 ASK1 功能。