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Eomes controls the development of Th17-derived (non-classic) Th1 cells during chronic inflammation

机译:加工控制Th17-derived的发展(传达)在慢性Th1细胞炎症

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摘要

It is well accepted that Th17 cells are a highly plastic cell subset that can be easily directed toward the Th1 phenotype in vitro and also in vivo during inflammation. However, there is an ongoing debate regarding the reverse plasticity (conversion from Th1 to Th17). We show here that ectopic ROR-gamma t expression can restore or initiate IL-17 expression by non-classic or classic Th1 cells, respectively, while common pro-Th17 cytokine cocktails are ineffective. This stability of the Th1 phenotype is at least partially due to the presence of a molecular machinery governed by the transcription factor Eomes, which promotes IFN-gamma secretion while inhibiting the expression of ROR-gamma t and IL-17. By using a mouse model of T cell-dependent colitis we demonstrate that Eomes controls non-classic Th1 cell development also in vivo and promotes their pathogenic potential. Eomes expression associates to a highly inflammatory phenotype also in patients with juvenile idiopathic arthritis. Indeed, it favors the acquisition of a cytotoxic signature, and promotes the development of IFN-gamma(+)GM-CSF+ cells that have been described to be pathogenic in chronic inflammatory disorders.
机译:能够很好的接受,Th17细胞是一个高度塑料容易定向细胞子集向Th1表型体外也在期间体内炎症。争论关于反向塑性(转换从Th1 Th17)。可以恢复或异位ROR-gamma t表达式启动IL-17传达或表达式经典的Th1细胞,分别,而普遍pro-Th17细胞因子鸡尾酒是无效的。至少Th1表型的稳定部分由于分子的存在机械由转录因子加工,促进IFN-gamma分泌抑制ROR-gamma t和的表达IL-17。结肠炎我们证明加工控制传达Th1细胞体内和发展促进他们的致病潜力。表达式的同事高度炎症表现型还在青少年患者特发性关节炎。收购一个细胞毒性签名促进发展的IFN-gamma (+) gm - csf +描述了细胞致病在慢性炎症性疾病。

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