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树突状细胞表面表达的多巴胺受体 D5 的刺激增强了 Th17 介导的免疫。

Stimulation of dopamine receptor D5 expressed on dendritic cells potentiates Th17-mediated immunity.

机构信息

Fundación Ciencia y Vida, Santiago, Chile.

出版信息

J Immunol. 2012 Apr 1;188(7):3062-70. doi: 10.4049/jimmunol.1103096. Epub 2012 Feb 29.

Abstract

Dendritic cells (DCs) are responsible for priming T cells and for promoting their differentiation from naive T cells into appropriate effector cells. Emerging evidence suggests that neurotransmitters can modulate T cell-mediated immunity. However, the involvement of specific neurotransmitters or receptors remains poorly understood. In this study, we analyzed the role of dopamine in the regulation of DC function. We found that DCs express dopamine receptors as well as the machinery necessary to synthesize, store, and degrade dopamine. Notably, the expression of D5R decreased upon LPS-induced DC maturation. Deficiency of D5R on the surface of DCs impaired LPS-induced IL-23 and IL-12 production and consequently attenuated the activation and proliferation of Ag-specific CD4(+) T cells. To determine the relevance of D5R expressed on DCs in vivo, we studied the role of this receptor in the modulation of a CD4(+) T cell-driven autoimmunity model. Importantly, D5R-deficient DCs prophylactically transferred into wild-type recipients were able to reduce the severity of experimental autoimmune encephalomyelitis. Furthermore, mice transferred with D5R-deficient DCs displayed a significant reduction in the percentage of Th17 cells infiltrating the CNS without differences in the percentage of Th1 cells compared with animals transferred with wild-type DCs. Our findings demonstrate that by contributing to CD4(+) T cell activation and differentiation to Th17 phenotype, D5R expressed on DCs is able to modulate the development of an autoimmune response in vivo.

摘要

树突状细胞 (DCs) 负责激活 T 细胞,并促进其从幼稚 T 细胞分化为适当的效应细胞。新出现的证据表明,神经递质可以调节 T 细胞介导的免疫。然而,特定神经递质或受体的参与仍知之甚少。在这项研究中,我们分析了多巴胺在调节 DC 功能中的作用。我们发现 DCs 表达多巴胺受体以及合成、储存和降解多巴胺所需的机制。值得注意的是,D5R 的表达在 LPS 诱导的 DC 成熟时下降。DC 表面 D5R 的缺乏会损害 LPS 诱导的 IL-23 和 IL-12 的产生,从而减弱 Ag 特异性 CD4(+) T 细胞的激活和增殖。为了确定 DC 上表达的 D5R 在体内的相关性,我们研究了该受体在调节 CD4(+) T 细胞驱动的自身免疫模型中的作用。重要的是,预防性转移到野生型受体中的 D5R 缺陷型 DC 能够减轻实验性自身免疫性脑脊髓炎的严重程度。此外,与用野生型 DC 转移的动物相比,转移了 D5R 缺陷型 DC 的小鼠,浸润中枢神经系统的 Th17 细胞的百分比显著降低,而 Th1 细胞的百分比没有差异。我们的研究结果表明,通过促进 CD4(+) T 细胞的激活和分化为 Th17 表型,DC 上表达的 D5R 能够调节体内自身免疫反应的发展。

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