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Syntenin负向调节TRAF6介导的IL-1R/TLR4信号传导。

Syntenin negatively regulates TRAF6-mediated IL-1R/TLR4 signaling.

作者信息

Chen Fang, Du Yijuan, Zhang Zheng, Chen Gang, Zhang Min, Shu Hong-Bing, Zhai Zhonghe, Chen Danying

机构信息

College of Life Sciences, Peking University, Beijing 100871, China.

出版信息

Cell Signal. 2008 Apr;20(4):666-74. doi: 10.1016/j.cellsig.2007.12.002. Epub 2007 Dec 8.

Abstract

Toll-like receptors are involved in host defense against invading pathogens. The two members of this superfamily, IL-1R and TLR4, activate overlapping NF-kappaB activate signaling pathway mediated by TRAF6. In this study, we identified syntenin as a negative regulator of IL-1R and TLR4 mediated NF-kappaB activation. Overexpressed syntenin inhibited IL-1- or LPS-, but not TNF- induced NF-kappaB activation and IL-8 mRNA expression in a dose dependent manner. Syntenin specifically interacted with TRAF6 in human 293 cells, and inhibited TRAF6 induced NF-kappaB and AP-1 activation. Syntenin also associated with TRAF6 under physiological condition, and dissociated from TRAF6 upon IL-1 stimulation. This might be due to a competition between syntenin and IRAK1, as overexpression of IRAK1 disrupted the interaction of syntenin with TRAF6, and rescued syntenin induced reduction of TRAF6 ubiquitination. Moreover, knockdown of syntenin potentiated IL-1- or LPS- triggered NF-kappaB activation and IL-8 mRNA expression. These findings suggest that syntenin is a physiological suppressor of TRAF6 and plays an inhibitory role in IL-1R- and TLR4- mediated NF-kappaB activation pathways.

摘要

Toll样受体参与宿主抵御入侵病原体的防御反应。该超家族的两个成员,即IL-1R和TLR4,激活由TRAF6介导的重叠的NF-κB激活信号通路。在本研究中,我们鉴定了syntenin作为IL-1R和TLR4介导的NF-κB激活的负调节因子。过表达的syntenin以剂量依赖的方式抑制IL-1或LPS诱导的,但不抑制TNF诱导的NF-κB激活和IL-8 mRNA表达。Syntenin在人293细胞中与TRAF6特异性相互作用,并抑制TRAF6诱导的NF-κB和AP-1激活。在生理条件下,syntenin也与TRAF6相关联,并在IL-1刺激后与TRAF6解离。这可能是由于syntenin和IRAK1之间的竞争,因为IRAK1的过表达破坏了syntenin与TRAF6的相互作用,并挽救了syntenin诱导的TRAF6泛素化的减少。此外,敲低syntenin增强了IL-1或LPS触发的NF-κB激活和IL-8 mRNA表达。这些发现表明,syntenin是TRAF6的生理抑制剂,并且在IL-1R和TLR4介导的NF-κB激活途径中发挥抑制作用。

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