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Trif-related adapter molecule is phosphorylated by PKC epsilon during toll-like receptor 4 signaling

机译:Trif相关的衔接子分子在toll样受体4信号转导过程中被PKCε磷酸化

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摘要

PKC epsilon has been shown to play a key role in the effect of the Gram-negative bacterial product LPS; however, the target for PKC epsilon in LPS signaling is unknown. LPS signaling is mediated by Toll-like receptor 4, which uses four adapter proteins, MyD88, MyD88 adapter-like (Mal), Toll/IL-1R domain-containing adapter inducing IFN-beta (Trif), and Trif-related adapter molecule (TRAM). Here we show that TRAM is transiently phosphorylated by PKC epsilon on serine-16 in an LPS-dependent manner. Activation of IFN regulatory factor 3 and induction of the chemokine RANTES, which are both TRAM-dependent, were attenuated in PKC epsilon-deficient cells. TRAMS16A is inactive when overexpressed and is attenuated in its ability to reconstitute signaling in TRAM-deficient cells. We have therefore uncovered a key process in Toll-like receptor 4 signaling, identifying TRAM as the target for PKC epsilon.
机译:PKC epsilon已显示在革兰氏阴性细菌产品LPS的作用中起关键作用。然而,在LPS信号中PKCε的靶标尚不清楚。 LPS信号转导由Toll样受体4介导,该受体使用四个衔接子蛋白,MyD88,MyD88衔接子样(Mal),包含Toll / IL-1R域的衔接子诱导IFN-beta(Trif)和Trif相关的衔接子分子(电车)。在这里,我们显示TRAM被丝氨酸16上的PKC epsilon以LPS依赖性方式瞬时磷酸化。都依赖TRAM的IFN调节因子3的激活和趋化因子RANTES的诱导在PKCε缺陷细胞中减弱。 TRAMS16A在过度表达时是无活性的,并且在缺乏TRAM的细胞中重构信号的能力减弱。因此,我们发现了Toll样受体4信号转导的关键过程,确定TRAM为PKCε的靶标。

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