TLR配体连接开关BMDCs的腺苷受体使用,导致实验性自身免疫性葡萄膜炎中Th17反应增强

Q4 Immunology and Microbiology
Deming Sun , Hui Shao , Henry J. Kaplan
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引用次数: 0

摘要

细胞外腺苷水平在炎症期间大大增加,从而调节免疫反应。我们之前报道过腺苷增强Th17反应而抑制Th1反应。本研究考察了DC对腺苷的反应是否导致了腺苷的偏倚效应,并确定了腺苷和TLR配体对DC功能是否具有拮抗或协同作用。我们的研究结果表明,腺苷积极参与dc对致病性T细胞的体外和体内活化;然而,在腺苷作用下,dc促进Th1和Th17反应的能力被分离。此外,激活DC上的A2ARs可抑制Th1反应,而激活DC上的a2br可增强Th17反应。一个有趣的观察结果是,TLR结合将腺苷受体从a2ar转换为A2BR,使用骨髓源性树突状细胞(bmdc),腺苷通过A2BR结合bmdc,将腺苷的抗炎作用转化为促炎作用。腺苷和TLR配体对BMDCs的双重作用协同增强Th17应答,而对Th1应答的双重作用是拮抗的。结果表明,当炎症环境同时积累TLR配体和腺苷时,Th17反应将获得优势地位,其潜在机制包括TLR配体暴露具有独特的作用,可将dc的腺苷受体从a2ar转换为a2br,从而促进Th17反应。我们的观察结果将提高我们对自身免疫性疾病和其他相关疾病发病机制中Th1和Th17反应平衡的理解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

TLR ligand ligation switches adenosine receptor usage of BMDCs leading to augmented Th17 responses in experimental autoimmune uveitis

TLR ligand ligation switches adenosine receptor usage of BMDCs leading to augmented Th17 responses in experimental autoimmune uveitis

The extracellular level of adenosine increases greatly during inflammation, which modulates immune responses. We have previously reported that adenosine enhances Th17 responses while it suppresses Th1 responses. This study examined whether response of DC to adenosine contributes to the biased effect of adenosine and determined whether adenosine and TLR ligands have counteractive or synergistic effects on DC function. Our results show that adenosine is actively involved in both in vitro and in vivo activation of pathogenic T cells by DCs; however, under adenosine effect DCs' capability of promoting Th1 versus Th17 responses are dissociated. Moreover, activation of A2ARs on DCs inhibits Th1 responses whereas activation of A2BRs on DC enhances Th17 responses. An intriguing observation was that TLR engagement switches the adenosine receptor from A2ARs to A2BRs usage of bone marrow-derived dendritic cells (BMDCs) and adenosine binding to BMDCs via A2BR converts adenosine's anti-to proinflammatory effect. The dual effects of adenosine and TLR ligand on BMDCs synergistically enhances the Th17 responses whereas the dual effect on Th1 responses is antagonistic. The results imply that Th17 responses will gain dominance when inflammatory environment accumulates both TLR ligands and adenosine and the underlying mechanisms include that TLR ligand exposure has a unique effect switching adenosine receptor usage of DCs from A2ARs to A2BRs, via which Th17 responses are promoted. Our observation should improve our understanding on the balance of Th1 and Th17 responses in the pathogenesis of autoimmune and other related diseases.

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