首页> 外文OA文献 >Poxvirus protein N1L targets the I-kappaB kinase complex, inhibits signaling to NF-kappaB by the tumor necrosis factor superfamily of receptors, and inhibits NF-kappaB and IRF3 signaling by toll-like receptors
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Poxvirus protein N1L targets the I-kappaB kinase complex, inhibits signaling to NF-kappaB by the tumor necrosis factor superfamily of receptors, and inhibits NF-kappaB and IRF3 signaling by toll-like receptors

机译:痘病毒蛋白N1L靶向I-kappaB激酶复合物,抑制受体肿瘤坏死因子超家族对NF-κB的信号传导,并通过Toll样受体抑制NF-κB和IRF3信号传导。

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摘要

Poxviruses encode proteins that suppress host immune responses, including secreted decoy receptors for pro-inflammatory cytokines such as interleukin-1 (IL-1) and the vaccinia virus proteins A46R and A52R that inhibit intracellular signaling by members of the IL-1 receptor (IL-1R) and Toll-like receptor (TLR) family. In vivo, the TLRs mediate the innate immune response by serving as pathogen recognition receptors, whose oligomerized intracellular Toll/IL-1 receptor (TIR) domains can initiate innate immune signaling. A family of TIR domain-containing adapter molecules transduces signals from engaged receptors that ultimately activate NF-kappaB and/or interferon regulatory factor 3 (IRF3) to induce pro-inflammatory cytokines. Data base searches detected a significant similarity between the N1L protein of vaccinia virus and A52R, a poxvirus inhibitor of TIR signaling. Compared with other poxvirus virulence factors, the poxvirus N1L protein strongly affects virulence in vivo; however, the precise target of N1L was previously unknown. Here we show that N1L suppresses NF-kappaB activation following engagement of Toll/IL-1 receptors, tumor necrosis factor receptors, and lymphotoxin receptors. N1L inhibited receptor-, adapter-, TRAF-, and IKK-alpha and IKK-beta-dependent signaling to NF-kappaB. N1L associated with several components of the multisubunit I-kappaB kinase complex, most strongly associating with the kinase, TANK-binding kinase 1 (TBK1). Together these findings are consistent with the hypothesis that N1L disrupts signaling to NF-kappaB by Toll/IL-1Rs and TNF superfamily receptors by targeting the IKK complex for inhibition. Furthermore, N1L inhibited IRF3 signaling, which is also regulated by TBK1. These studies define a role for N1L as an immunomodulator of innate immunity by targeting components of NF-kappaB and IRF3 signaling pathways.
机译:痘病毒编码抑制宿主免疫反应的蛋白质,包括促炎细胞因子的分泌诱饵受体,例如白介素-1(IL-1)以及痘苗病毒蛋白A46R和A52R,它们通过IL-1受体的成员抑制细胞内信号传导(IL -1R)和Toll样受体(TLR)家族。在体内,TLR通过充当病原体识别受体来介导先天免疫应答,其低聚的细胞内Toll / IL-1受体(TIR)域可以启动先天免疫信号传导。含TIR结构域的衔接子分子家族转导来自参与受体的信号,这些受体最终激活NF-κB和/或干扰素调节因子3(IRF3)以诱导促炎性细胞因子。数据库搜索发现牛痘病毒的N1L蛋白与TIR信号的痘病毒抑制剂A52R之间存在显着相似性。与其他痘病毒毒力因子相比,痘病毒N1L蛋白强烈影响体内的毒力。但是,N1L的确切靶标以前是未知的。在这里,我们显示N1L在Toll / IL-1受体,肿瘤坏死因子受体和淋巴毒素受体参与后抑制NF-κB活化。 N1L抑制了NF-κB的受体,衔接子,TRAF和IKK-alpha和IKK-beta依赖性信号传导。 N1L与多亚基I-kappaB激酶复合物的几个成分相关,与激酶TANK结合激酶1(TBK1)最紧密相关。这些发现共同符合以下假设:N1L通过靶向IKK复合物进行抑制来破坏Toll / IL-1R和TNF超家族受体向NF-κB的信号传导。此外,N1L抑制了IRF3信号传导,这也受到TBK1的调节。这些研究通过靶向NF-κB和IRF3信号传导途径的成分,确定了N1L作为先天免疫的免疫调节剂的作用。

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