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RNA干扰在小鼠巨噬细胞中揭示TLR4和TLR7诱导的NF-κB1 p105-TPL2-ERK通路对肿瘤坏死因子受体相关因子6的敏感性

Sensitivity of TLR4- and -7-induced NF kappa B1 p105-TPL2-ERK pathway to TNF-receptor-associated-factor-6 revealed by RNAi in mouse macrophages.

作者信息

Loniewski Katie J, Patial Sonika, Parameswaran Narayanan

机构信息

Division of Pathology, Department of Physiology, Michigan State University, East Lansing, MI 48824, USA.

出版信息

Mol Immunol. 2007 Jul;44(15):3715-23. doi: 10.1016/j.molimm.2007.04.002. Epub 2007 May 15.

Abstract

Tumor necrosis factor (TNF)-receptor-associated-factor-6 (TRAF6) is an adaptor protein involved in Toll-like receptor (TLR) signaling. Recent studies using macrophages from TRAF6 knockout mice have revealed that TRAF6 is required for TLR7 signaling. However, an essential role of TRAF6 in TLR4 signaling and cytokine production is slightly controversial. Using an RNAi approach to reduce the cellular levels of TRAF6, we tested the role of this adaptor protein on the sensitivity of the various components of the ERK pathway mediated by TLR4 and -7 in Raw264.7, a mouse macrophage cell line. ERK activation in macrophages by TLR4 and -7 is mediated via a MAP3K, called TPL2/COT, which under unstimulated conditions is associated with NF kappa B1 p105, a member of the I kappa B family of proteins. Upon stimulation with TLR ligands, p105 is phosphorylated by I kappa B kinase (IKK) complex and partially degraded, which releases TPL2. The free TPL2 is active and stimulates the ERK pathway via MEK1/2. The free TPL2, however, is also unstable and is targeted for degradation. We demonstrate here that reduced level of TRAF6 ( approximately 80% decrease) in macrophages does not significantly affect any of the components of the TLR4-stimulated ERK pathway, including p105 phosphorylation, TPL2 degradation and ERK1/2 phosphorylation. Surprisingly, however, TLR4-induced JNK1/2 phosphorylation is significantly blocked by TRAF6 knockdown, suggesting that ERK and JNK pathways are differentially sensitive to TRAF6 levels. Furthermore, although TLR4-mediated IKK-induced p105 phosphorylation is not sensitive to TRAF6 knockdown, I kappa B alpha phosphorylation (also, IKK-induced) is significantly blocked, suggesting that TLR4 activation results in a TRAF6-sensitive and -insensitive IKK activation in macrophages. In contrast to TLR4 signaling, TLR7 activation of ERK, JNK pathways and phosphorylation of p105 and I kappa B alpha are completely inhibited in TRAF6 knockdown cells. Compared to the signaling data, while TLR4-induced TNFalpha mRNA expression is not significantly inhibited by TRAF6 knockdown, TLR7-induced TNFalpha mRNA is significantly blocked. In contrast, both TLR4- and TLR7-induced IL6 mRNA are significantly blocked by TRAF6 knockdown. These results suggest that while TRAF6 is absolutely essential for TLR7 activation of ERK, JNK and NF kappa B pathways, TLR4-induced ERK, JNK pathways and IKK-mediated phosphorylation of I kappa B family members as well as cytokine expression are differentially sensitive to the cellular levels of TRAF6. These results have important implications in terms of therapeutic targeting of TRAF6 complexes in diseases where TLR4 and -7 are involved.

摘要

肿瘤坏死因子(TNF)受体相关因子6(TRAF6)是一种参与Toll样受体(TLR)信号传导的衔接蛋白。最近使用来自TRAF6基因敲除小鼠的巨噬细胞进行的研究表明,TRAF6是TLR7信号传导所必需的。然而,TRAF6在TLR4信号传导和细胞因子产生中的重要作用仍存在一定争议。我们采用RNA干扰方法降低细胞内TRAF6水平,以测试这种衔接蛋白对小鼠巨噬细胞系Raw264.7中由TLR4和TLR7介导的ERK途径各组分敏感性的作用。TLR4和TLR7在巨噬细胞中激活ERK是通过一种名为TPL2/COT的MAP3K介导的,在未受刺激条件下,它与IκB家族蛋白成员NFκB1 p105相关联。受到TLR配体刺激后,p105被IκB激酶(IKK)复合物磷酸化并部分降解,从而释放出TPL2。游离的TPL2具有活性,并通过MEK1/2刺激ERK途径。然而,游离的TPL2也不稳定,会被靶向降解。我们在此证明,巨噬细胞中TRAF6水平降低(约降低80%)不会显著影响TLR4刺激的ERK途径的任何组分,包括p105磷酸化、TPL2降解和ERK1/2磷酸化。然而,令人惊讶的是,TRAF6敲低显著阻断了TLR4诱导的JNK1/2磷酸化,这表明ERK和JNK途径对TRAF6水平的敏感性不同。此外,尽管TLR4介导的IKK诱导的p105磷酸化对TRAF6敲低不敏感,但IκBα磷酸化(也是IKK诱导的)却被显著阻断,这表明TLR4激活在巨噬细胞中导致了对TRAF6敏感和不敏感的IKK激活。与TLR4信号传导不同,在TRAF6敲低的细胞中,TLR7对ERK、JNK途径的激活以及p105和IκBα的磷酸化被完全抑制。与信号传导数据相比,虽然TRAF6敲低不会显著抑制TLR4诱导的TNFα mRNA表达,但TLR7诱导的TNFα mRNA却被显著阻断。相反,TRAF6敲低显著阻断了TLR4和TLR7诱导的IL6 mRNA表达。这些结果表明,虽然TRAF6对于TLR7激活ERK、JNK和NFκB途径绝对必要,但TLR4诱导的ERK、JNK途径以及IKK介导的IκB家族成员磷酸化和细胞因子表达对TRAF6细胞水平的敏感性不同。这些结果对于涉及TLR4和TLR7的疾病中TRAF6复合物的治疗靶向具有重要意义。

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