首页> 外文OA文献 >The Neuropeptide Calcitonin Gene-related Peptide Causes Repression of Tumor Necrosis Factor-α Transcription and Suppression of ATF-2 Promoter Recruitment in Toll-like Receptor-stimulated Dendritic Cells♦
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The Neuropeptide Calcitonin Gene-related Peptide Causes Repression of Tumor Necrosis Factor-α Transcription and Suppression of ATF-2 Promoter Recruitment in Toll-like Receptor-stimulated Dendritic Cells♦

机译:神经肽降钙素基因相关肽导致Toll样受体刺激的树突状细胞中肿瘤坏死因子-α转录的阻遏和ATF-2启动子的抑制

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摘要

Sensory nerves may dampen inflammatory processes through the release of the neuropeptide calcitonin gene-related peptide (CGRP). CGRP mediates immunosuppressive activities through up-regulation of interleukin-10 or, alternatively, through an interleukin-10-independent pathway that is associated with rapid induction of the transcriptional inducible cAMP early repressor (ICER). In this work, we further investigated the molecular mechanisms of immune modulation by CGRP. Using TLR2-stimulated dendritic cells, we show that inhibition of tumor necrosis factor-α production by CGRP is dependent on up-regulation of endogenous ICER. Dendritic cell expression of ICER was selectively induced by CGRP and elevation of cellular cAMP levels but not by numerous pro- and anti-inflammatory cytokines. Treatment of dendritic cells with CGRP did not interfere with the induction of Tnfa gene expression but caused premature repression of TLR2-induced transcriptional activity. ATF-2 was rapidly phosphorylated and recruited to the Tnfa promoter following ligation of TLR2. Concomitant administration of CGRP completely prevented binding of ATF-2 to the Tnfa promoter, whereas recruitment of ICER was markedly elevated. In contrast, CGRP did not influence TLR2-stimulated binding of NF-κB p65. Together, these results are consistent with a model suggesting that CGRP causes rapid up-regulation of ICER, which in turn competes with ATF-2 for binding to the Tnfa promoter, leading to repression of gene expression.
机译:感觉神经可通过释放神经肽降钙素基因相关肽(CGRP)来抑制炎症过程。 CGRP通过上调白介素10或通过与快速诱导转录诱导型cAMP早期阻遏物(ICER)相关的白介素10独立途径介导免疫抑制活性。在这项工作中,我们进一步研究了CGRP免疫调节的分子机制。使用TLR2刺激的树突状细胞,我们表明,CGRP抑制肿瘤坏死因子-α的产生取决于内源性ICER的上调。 CGRP和细胞cAMP水平的升高选择性诱导ICER的树突状细胞表达,但众多促炎和抗炎细胞因子却不能。用CGRP处理树突状细胞不会干扰Tnfa基因表达的诱导,但会导致TLR2诱导的转录活性过早抑制。连接TLR2后,ATF-2迅速被磷酸化并募集到Tnfa启动子。 CGRP的同时给药完全阻止了ATF-2与Tnfa启动子的结合,而ICER的募集则明显增加。相反,CGRP不会影响TLR2刺激的NF-κBp65结合。总之,这些结果与一个模型相符,该模型表明CGRP会导致ICER快速上调,而ICER则与ATF-2竞争与Tnfa启动子的结合,从而导致基因表达的抑制。

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