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树突状细胞受 TLR 配体激活后释放 IL-12 依赖于 MyD88 信号,而 TRIF 信号对于 TLR 协同作用是不可或缺的。

Release of IL-12 by dendritic cells activated by TLR ligation is dependent on MyD88 signaling, whereas TRIF signaling is indispensable for TLR synergy.

机构信息

Department of Dermatology, University of Mainz, Mainz, Germany.

出版信息

J Leukoc Biol. 2010 Jul;88(1):189-99. doi: 10.1189/jlb.0408228. Epub 2010 Apr 1.

Abstract

Recently, it has been shown that certain combinations of TLR ligands act in synergy to induce the release of IL-12 by DCs. In this study, we sought to define the critical parameters underlying TLR synergy. Our data show that TLR ligands act synergistically if MyD88- and TRIF-dependent ligands are combined. TLR4 uses both of these adaptor molecules, thus activation via TLR4 proved to be a synergistic event on its own. TLR synergy did not affect all aspects of DC activation but enhanced primarily the release of certain cytokines, particularly IL-12, whereas the expression of costimulatory molecules remained unchanged. Consequently, synergistic activation of DC did not affect their ability to induce T cell proliferation but resulted in T(H)1-biased responses in vitro and in vivo. Furthermore, we examined the impact of TLR ligand combinations on primary DC in vitro but observed only modest effects with a combination of CpG + Poly (I:C). However, noticeable synergy in terms of IL-12 production by DCs was detectable in vivo after systemic administration of CpG + Poly (I:C). Finally, we show that synergy is partially dependent on IFNAR signaling but does not require the release of IFNs to the enviroment, suggesting an autocrine action of type I IFNs.

摘要

最近的研究表明,TLR 配体的某些组合可以协同作用,诱导 DC 释放 IL-12。在本研究中,我们试图确定 TLR 协同作用的关键参数。我们的数据表明,如果将 MyD88 和 TRIF 依赖性配体组合使用,TLR 配体可以协同作用。TLR4 同时使用这两种衔接分子,因此通过 TLR4 的激活本身就是一个协同事件。TLR 协同作用并不影响 DC 激活的所有方面,但主要增强了某些细胞因子(特别是 IL-12)的释放,而共刺激分子的表达则保持不变。因此,协同激活 DC 不会影响其诱导 T 细胞增殖的能力,但会导致体外和体内 T(H)1 偏向性反应。此外,我们在体外检查了 TLR 配体组合对原代 DC 的影响,但仅观察到 CpG+Poly (I:C) 组合的适度影响。然而,在全身给予 CpG+Poly (I:C) 后,在体内可以检测到 DC 产生 IL-12 的明显协同作用。最后,我们表明协同作用部分依赖于 IFNAR 信号,但不需要将 IFNs 释放到环境中,这表明 I 型 IFNs 具有自分泌作用。

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