Cosentino Marco, Fietta Anna Maria, Ferrari Marco, Rasini Emanuela, Bombelli Raffaella, Carcano Elena, Saporiti Federica, Meloni Federica, Marino Franca, Lecchini Sergio
Department of Clinical Medicine, Section of Experimental and Clinical Pharmacology, Center for Research in Neuroscience, University of Insubria, Via Ottorino Rossi n. 9, 21100 Varese VA, Italy.
Blood. 2007 Jan 15;109(2):632-42. doi: 10.1182/blood-2006-01-028423. Epub 2006 Sep 19.
CD4+CD25+ regulatory T lymphocytes (Tregs) are specialized T cells playing a key role in the control of immune homeostasis. Here, we show that human Tregs constitutively express tyrosine hydroxylase (TH, EC 1.14.16.2), the rate-limiting enzyme in the synthesis of catecholamines, and contain substantial amounts of dopamine, norepinephrine, and epinephrine, which are released upon treatment with reserpine. Catecholamine release results in reduced production of interleukin-10 and transforming growth factor-beta by Tregs, and in down-regulation of Treg-dependent inhibition of effector T-lymphocyte (Teff) proliferation, which occurs without affecting the production of tumor necrosis factor-alpha or interferon-gamma. Tregs and Teffs express on the cell membrane both D1-like and D2-like dopaminergic receptors to a similar extent (12%-29% of the cells). Catecholamine-dependent down-regulation of Tregs is, however, selectively reversed by pharmacological blockade of dopaminergic D1-like receptors, which in Tregs only (and not in Teffs) are also expressed at the level of mRNA and are functionally coupled to intracellular production of cAMP. These findings indicate that in human Tregs endogenous catecholamines subserve an autocrine/paracrine loop involving dopaminergic pathways and resulting in down-regulation of Treg function.
CD4+CD25+调节性T淋巴细胞(Tregs)是一类特殊的T细胞,在免疫稳态的调控中发挥关键作用。在此,我们发现人类Tregs组成性表达酪氨酸羟化酶(TH,EC 1.14.16.2),这是儿茶酚胺合成中的限速酶,并且含有大量多巴胺、去甲肾上腺素和肾上腺素,这些物质在用利血平处理后会被释放出来。儿茶酚胺的释放导致Tregs产生白细胞介素-10和转化生长因子-β减少,以及Treg依赖的效应T淋巴细胞(Teff)增殖抑制作用下调,而这一过程不影响肿瘤坏死因子-α或干扰素-γ的产生。Tregs和Teffs在细胞膜上表达D1样和D2样多巴胺能受体的程度相似(占细胞的12%-29%)。然而,多巴胺能D1样受体的药理学阻断可选择性逆转儿茶酚胺依赖的Tregs下调,D1样受体仅在Tregs中(而非Teffs中)在mRNA水平表达,并且在功能上与细胞内cAMP的产生偶联。这些发现表明,在人类Tregs中,内源性儿茶酚胺通过涉及多巴胺能途径的自分泌/旁分泌环路发挥作用,导致Treg功能下调。