Luftig Micah, Yasui Teruhito, Soni Vishal, Kang Myung-Soo, Jacobson Nils, Cahir-McFarland Ellen, Seed Brian, Kieff Elliott
Department of Microbiology, Brigham and Women's Hospital, Harvard Medical School, Boston, MA 02115, USA.
Proc Natl Acad Sci U S A. 2004 Jan 6;101(1):141-6. doi: 10.1073/pnas.2237183100. Epub 2003 Dec 22.
Epstein-Barr virus (EBV) latent infection membrane protein 1 (LMP1)-induced NF-kappaB activation is important for infected cell survival. LMP1 activates NF-kappaB, in part, by engaging tumor necrosis factor (TNF) receptor-associated factors (TRAFs), which also mediate NF-kappaB activation from LTbetaR and CD40. LTbetaR and CD40 activation of p100/NF-kappaB2 is now known to be NIK/IKKalpha-dependent and IKKbeta/IKKgamma independent. In the experiments described here, we found that EBV LMP1 induced p100/NF-kappaB2 processing in human lymphoblasts and HEK293 cells. LMP1-induced p100 processing was NIK/IKKalpha dependent and IKKbeta/IKKgamma independent. Furthermore, the LMP1 TRAF-binding site was required for p100 processing and p52 nuclear localization, whereas the LMP1 death domain-binding site was not. Moreover, the LMP1 TRAF-binding site preferentially caused RelB nuclear accumulation. In murine embryo fibroblasts (MEFs), IKKbeta was essential for LMP1 up-regulation of macrophage inflammatory protein (MIP)-2, TNFalpha, I-TAC, ELC, MIG, and CXCR4 RNAs. Interestingly, in IKKalpha knockout MEFs, LMP1 hyperinduced MIP-2, TNFalpha, and I-TAC expression, consistent with a role for IKKalpha in down-modulating canonical IKKbeta activation or its effects. In contrast, LMP1 failed to up-regulate CXCR4 and MIG RNA in IKKalpha knockout MEFs, indicating a dependence on noncanonical IKKalpha activation. Furthermore, LMP1 up-regulation of MIP-2 RNA in MEFs was both IKKbeta- and IKKgamma-dependent, whereas LMP1 upregulation of MIG and I-TAC RNA was fully IKKgamma independent. Thus, LMP1 induces typical canonical IKKbeta/IKKgamma-dependent, atypical canonical IKKbeta-dependent/IKKgamma-independent, and noncanonical NIK/IKKalpha-dependent NF-kappaB activations; NIK/IKKalpha-dependent NF-kappaB activation is principally mediated by the LMP1 TRAF-binding site.
爱泼斯坦-巴尔病毒(EBV)潜伏感染膜蛋白1(LMP1)诱导的核因子-κB(NF-κB)激活对受感染细胞的存活至关重要。LMP1部分通过结合肿瘤坏死因子(TNF)受体相关因子(TRAFs)激活NF-κB,TRAFs也介导来自淋巴毒素β受体(LTβR)和CD40的NF-κB激活。现已知道,LTβR和CD40对p100/NF-κB2的激活是NIK/IKKα依赖性的,且不依赖于IKKβ/IKKγ。在此处描述的实验中,我们发现EBV LMP1在人淋巴母细胞和HEK293细胞中诱导p100/NF-κB2的加工。LMP1诱导的p100加工是NIK/IKKα依赖性的,且不依赖于IKKβ/IKKγ。此外,p100加工和p52核定位需要LMP1的TRAF结合位点,而LMP1的死亡结构域结合位点则不需要。而且,LMP1的TRAF结合位点优先导致RelB核积累。在小鼠胚胎成纤维细胞(MEFs)中,IKKβ对于LMP1上调巨噬细胞炎性蛋白(MIP)-2、TNFα、I-TAC、ELC、MIG和CXCR4的RNA至关重要。有趣的是,在IKKα基因敲除的MEFs中,LMP1过度诱导MIP-2、TNFα和I-TAC的表达,这与IKKα在下调经典IKKβ激活或其效应中的作用一致。相反,LMP1在IKKα基因敲除的MEFs中未能上调CXCR4和MIG的RNA,这表明其依赖于非经典IKKα激活。此外,LMP1在MEFs中上调MIP-2 RNA是IKKβ和IKKγ依赖性的,而LMP1上调MIG和I-TAC RNA则完全不依赖于IKKγ。因此,LMP1诱导典型的经典IKKβ/IKKγ依赖性、非典型的经典IKKβ依赖性/IKKγ非依赖性以及非经典的NIK/IKKα依赖性NF-κB激活;NIK/IKKα依赖性NF-κB激活主要由LMP1的TRAF结合位点介导。