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首页> 外文期刊>Blood: The Journal of the American Society of Hematology >Human CD25highFoxp3pos regulatory T cells differentiate into IL-17-producing cells.
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Human CD25highFoxp3pos regulatory T cells differentiate into IL-17-producing cells.

机译:人CD25highFoxp3pos调节性T细胞分化为产生IL-17的细胞。

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The effector T-cell lineage shows great plasticity. Th17 cells are acknowledged to be instrumental in the response against microbial infection, but are also associated with autoimmune inflammatory processes. Here, we report that human regulatory T cells (CD4(pos)CD25(high)Foxp3(pos)CD127(neg)CD27(pos)) can differentiate into IL-17-producing cells, when stimulated by allogeneic antigen-presenting cells, especially monocytes, in the presence of rhIL-2/rhIL-15. These regulatory T cell (Treg)-derived IL-17-producing cells showed high expression of the Th17-related transcription factor RORgammat and were positively identified by CCR6 expression. This differentiation process was enhanced by exogenous IL-1beta, IL-23, and IL-21, whereas IL-6 or TGFbeta did not affect the emergence of IL-17-producing cells. The addition of IL-1 receptor antagonist (IL-1Ra), but not anti-IL-23 antibody, reduced IL-17-producing cell numbers. When an histone deacetylase (HDAC) inhibitor trichostatin A (TSA) was evaluated, we found a profound negative effect on the emergence of IL-17-producing cells from Tregs, implying that Treg differentiation into IL-17-producing cells depends on histone/protein deacetylase activity. Thus, the data suggest that epigenetic modification underlies the phenomenon of Treg plasticity here described.
机译:效应T细胞谱系显示出很大的可塑性。 Th17细胞被认为在抵抗微生物感染中起重要作用,但也与自身免疫性炎症过程有关。在这里,我们报道了当同种异体抗原呈递细胞刺激时,人类调节性T细胞(CD4(pos)CD25(high)Foxp3(pos)CD127(neg)CD27(pos))可以分化为产生IL-17的细胞,在rhIL-2 / rhIL-15存在的情况下,尤其是单核细胞。这些调节性T细胞(Treg)衍生的IL-17产生细胞显示Th17相关转录因子RORgammat的高表达,并通过CCR6表达得到阳性鉴定。外源IL-1beta,IL-23和IL-21增强了这种分化过程,而IL-6或TGFbeta不会影响产生IL-17的细胞的出现。加入IL-1受体拮抗剂(IL-1Ra),但不加入抗IL-23抗体,可减少产生IL-17的细胞数量。在评估组蛋白脱乙酰基酶(HDAC)抑制剂曲古抑菌素A(TSA)时,我们发现Treg对产生IL-17的细胞产生了深远的负面影响,这暗示Treg分化为产生IL-17的细胞取决于组蛋白/蛋白脱乙酰酶活性。因此,数据表明表观遗传修饰是本文所述的Treg可塑性现象的基础。

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