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首页> 外文期刊>The Journal of Immunology: Official Journal of the American Association of Immunologists >Induction of macrophage nitric oxide production by gram-negative flagellin involves signaling via heteromeric toll-like receptor 5/toll-like receptor 4 complexes.
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Induction of macrophage nitric oxide production by gram-negative flagellin involves signaling via heteromeric toll-like receptor 5/toll-like receptor 4 complexes.

机译:革兰氏阴性鞭毛蛋白诱导巨噬细胞一氧化氮的产生涉及通过异源toll样受体5 / toll样受体4复合物的信号传导。

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摘要

The induction of cytokine synthesis by flagellin is mediated by a Toll-like receptor 5 (TLR5) signaling pathway. Although flagellin activation of the IL-1R-associated kinase and induction of TNF-alpha synthesis are dependent on TLR5 and not TLR4, we have found that flagellin stimulates NO in macrophages via a pathway that requires TLR5 and TLR4. Flagellin induced NO synthesis in HeNC2 cells, a murine macrophage cell line that expresses wild-type TLR4, but not in TLR4-mutant or -deficient GG2EE and 10ScNCr/23 cells. Flagellin stimulated an increase in inducible NO synthase (iNOS) mRNA and activation of the iNOS promoter. TLR5 forms heteromeric complexes with TLR4 as well as homomeric complexes. IFN-gamma permitted GG2EE and 10ScNCr/23 cells to produce NO in response to flagellin. Flagellin stimulated IFN-beta synthesis and Stat1 activation. The effect of flagellin on iNOS gene expression was inhibited by a Stat1 mutant protein. Taken together, these results support the conclusions that flagellin inducesdistinct patterns of inflammatory mediators depending on the nature of the TLR5 signaling complex and that the induction of NO by flagellin involves signaling via TLR5/TLR4 complexes.
机译:鞭毛蛋白诱导的细胞因子合成是由Toll样受体5(TLR5)信号传导途径介导的。尽管IL-1R相关激酶的鞭毛蛋白活化和TNF-α合成的诱导依赖于TLR5而不是TLR4,但我们发现鞭毛蛋白通过需要TLR5和TLR4的途径刺激巨噬细胞中的NO。鞭毛蛋白在表达野生型TLR4的鼠巨噬细胞系HeNC2细胞中诱导NO合成,但在TLR4突变或缺陷的GG2EE和10ScNCr / 23细胞中不表达。鞭毛蛋白刺激诱导型NO合酶(iNOS)mRNA的增加和iNOS启动子的激活。 TLR5与TLR4以及同分异构体形成异源复合物。 IFN-γ允许GG2EE和10ScNCr / 23细胞响应鞭毛蛋白而产生NO。鞭毛蛋白刺激IFN-β合成和Stat1激活。鞭毛蛋白对iNOS基因表达的影响被Stat1突变蛋白抑制。综上所述,这些结果支持以下结论:鞭毛蛋白根据TLR5信号转导复合物的性质诱导炎性介质的不同模式,并且鞭毛蛋白诱导NO涉及通过TLR5 / TLR4复合物进行信号转导。

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