首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >The TRAF-associated protein TANK facilitates cross-talk within the IκB kinase family during Toll-like receptor signaling
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The TRAF-associated protein TANK facilitates cross-talk within the IκB kinase family during Toll-like receptor signaling

机译:TRAF相关蛋白TANK在Toll样受体信号传导过程中促进IκB激酶家族内的串扰

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摘要

Toll-like receptor (TLR) ligands that signal via TIR-domain-containing adapter-inducing IFNβ (TRIF) activate the IκB kinase (IKK)-related kinases, TRAF associated NFκB activator (TANK)-binding kinase-1 (TBK1) and IKKε, which then phosphorylate IRF3 and induce the production of IFNβ. Here we show that TBK1 and IKKε are also activated by TLR ligands that signal via MyD88. Notably, the activation of IKKε is rapid, transient, and it precedes a more prolonged activation of TBK1. The MyD88- and TRIF-dependent signaling pathways activate the IKK-related kinases by two signaling pathways. One is mediated by the canonical IKKs, whereas the other culminates in the autoactivation of the IKK-related kinases. Once activated, TBK1/IKKε then phosphorylate and inhibit the canonical IKKs. The negative regulation of the canonical IKKs by the IKK-related kinases occurs in both the TRIF- and MyD88-dependent TLR pathways, whereas IRF3 phosphorylation is restricted to the TRIF-dependent signaling pathway. We have discovered that the activation of IKKε is abolished, the activation of TBK1 is reduced, and the interaction between the IKK-related kinases and the canonical IKKs is suppressed in TANK−/− macrophages, preventing the IKK-related kinases from negatively regulating the canonical IKKs. In contrast, IRF3 phosphorylation and IFNβ production was normal in TANK−/− macrophages. Our results demonstrate a key role for TANK in enabling the canonical IKKs and the IKK-related kinases to regulate each other, which is required to limit the strength of TLR signaling and ultimately, prevent autoimmunity.
机译:通过包含TIR域的衔接子诱导IFNβ(TRIF)发出信号的Toll样受体(TLR)配体激活IκB激酶(IKK)相关的激酶,TRAF相关的NFκB激活剂(TANK)结合激酶1(TBK1)和IKKε,然后将IRF3磷酸化并诱导IFNβ的产生。在这里,我们显示TBK1和IKKε也被通过MyD88发出信号的TLR配体激活。值得注意的是,IKKε的激活是快速,短暂的,并且在TBK1的激活时间更长之前。 MyD88和TRIF依赖的信号通路通过两个信号通路激活IKK相关的激酶。一种是由经典的IKK介导的,而另一种则是由IKK相关激酶的自激活而达到高潮的。激活后,TBK1 /IKKε就会磷酸化并抑制经典的IKK。 IKK相关激酶对经典IKK的负调控在TRIF和MyD88依赖的TLR途径中均发生,而IRF3磷酸化仅限于TRIF依赖的信号传导途径。我们发现,在TANK -/-巨噬细胞中,IKKε的激活被取消,TBK1的激活被减少,IKK相关激酶与经典IKK之间的相互作用被抑制,从而阻止了IKK负调控经典IKK的相关激酶。相反,TANK -/-巨噬细胞中IRF3磷酸化和IFNβ产生正常。我们的结果表明,TANK在使规范性IKK和IKK相关激酶相互调节中起关键作用,这是限制TLR信号强度并最终预防自身免疫所必需的。

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