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A cluster of coregulated genes determines TGF-β–induced regulatory T-cell (Treg) dysfunction in NOD mice

机译:一群调控基因决定了NOD小鼠中TGF-β诱导的调节性T细胞(Treg)功能障碍

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摘要

Foxp3+ regulatory T cells (Tregs) originate in the thymus, but the Treg phenotype can also be induced in peripheral lymphoid organs or in vitro by stimulation of conventional CD4+ T cells with IL-2 and TGF-β. There have been divergent reports on the suppressive capacity of these TGF-Treg cells. We find that TGF-Tregs derived from diabetes-prone NOD mice, although expressing normal Foxp3 levels, are uniquely defective in suppressive activity, whereas TGF-Tregs from control strains (B6g7) or ex vivo Tregs from NOD mice all function normally. Most Treg-typical transcripts were shared by NOD or B6g7 TGF-Tregs, except for a small group of differentially expressed genes, including genes relevant for suppressive activity (Lrrc32, Ctla4, and Cd73). Many of these transcripts form a coregulated cluster in a broader analysis of T-cell differentiation. The defect does not map to idd3 or idd5 regions. Whereas Treg cells from NOD mice are normal in spleen and lymph nodes, the NOD defect is observed in locations that have been tied to pathogenesis of diabetes (small intestine lamina propria and pancreatic lymph node). Thus, a genetic defect uniquely affects a specific Treg subpopulation in NOD mice, in a manner consistent with a role in determining diabetes susceptibility.
机译:Foxp3 +调节性T细胞(Tregs)起源于胸腺,但Treg表型也可以在外周淋巴器官中或体外通过用IL-2和TGF-β刺激常规CD4 + T细胞来诱导。关于这些TGF-Treg细胞的抑制能力已有不同的报道。我们发现,来自糖尿病易发性NOD小鼠的TGF-Treg,尽管表达正常的Foxp3水平,但在抑制活性方面具有独特的缺陷,而来自对照菌株(B6g7)的TGF-Treg或来自NOD小鼠的离体Treg都正常发挥作用。除了少数差异表达的基因,包括与抑制活性相关的基因(Lrrc32,Ctla4和Cd73)外,NOD或B6g7 TGF-Treg共享大多数Treg典型的转录本。在更广泛的T细胞分化分析中,这些转录物中的许多转录物形成了一个有核聚簇。该缺陷不会映射到idd3或idd5区域。尽管来自NOD小鼠的Treg细胞在脾脏和淋巴结中正常,但在与糖尿病的发病机制有关的位置(小肠固有层和胰腺淋巴结)中观察到了NOD缺陷。因此,遗传缺陷以与确定糖尿病易感性一致的方式唯一影响NOD小鼠中特定的Treg亚群。

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