Lupar Ekaterina, Brack Maria, Garnier Laure, Laffont Sophie, Rauch Katharina S, Schachtrup Kristina, Arnold Sebastian J, Guéry Jean-Charles, Izcue Ana
Max-Planck-Institute of Immunobiology and Epigenetics, D-79108 Freiburg, Germany; Center for Chronic Immunodeficiency, University Medical Center Freiburg and University of Freiburg, D-79106 Freiburg, Germany; Faculty of Biology, University of Freiburg, D-79104 Freiburg, Germany;
Max-Planck-Institute of Immunobiology and Epigenetics, D-79108 Freiburg, Germany; Center for Chronic Immunodeficiency, University Medical Center Freiburg and University of Freiburg, D-79106 Freiburg, Germany;
J Immunol. 2015 Nov 15;195(10):4742-52. doi: 10.4049/jimmunol.1501159. Epub 2015 Oct 9.
CD4(+) T cells polarize into effector Th subsets characterized by signature transcription factors and cytokines. Although T-bet drives Th1 responses and represses the alternative Th2, Th17, and Foxp3(+) regulatory T cell fates, the role of the T-bet-related transcription factor eomesodermin (Eomes) in CD4(+) T cells is less well understood. In this study, we analyze the expression and effects of Eomes in mouse CD4(+) T lymphocytes. We find that Eomes is readily expressed in activated CD4(+) Th1 T cells in vivo. Eomes(+) CD4(+) T cells accumulated in old mice, under lymphopenic conditions in a T cell transfer model of colitis, and upon oral Ag administration. However, despite its expression, genetic deletion of Eomes in CD4(+) T cells did not impact on IFN-γ production nor increase Th2 or Th17 responses. In contrast, Eomes deficiency favored the accumulation of Foxp3(+) cells in old mice, after in vivo differentiation of Eomes-deficient naive CD4(+) T cells, and in response to oral Ag in a cell-intrinsic way. Enforced Eomes expression during in vitro regulatory T cell induction also reduced Foxp3 transcription. Likewise, bystander Eomes-deficient CD4(+) T cells were more efficient at protecting from experimental autoimmune encephalitis compared with wild-type CD4(+) T cells. This enhanced capacity of Eomes-deficient CD4(+) T cells to inhibit EAE in trans was associated with an enhanced frequency of Foxp3(+) cells. Our data identify a novel role for Eomes in CD4(+) T cells and indicate that Eomes expression may act by limiting Foxp3 induction, which may contribute to the association of EOMES to susceptibility to multiple sclerosis.
CD4(+) T细胞分化为以标志性转录因子和细胞因子为特征的效应性Th亚群。尽管T-bet驱动Th1反应并抑制替代性Th2、Th17和Foxp3(+)调节性T细胞命运,但T-bet相关转录因子胚外中胚层决定蛋白(Eomes)在CD4(+) T细胞中的作用尚不清楚。在本研究中,我们分析了Eomes在小鼠CD4(+) T淋巴细胞中的表达和作用。我们发现Eomes在体内活化的CD4(+) Th1 T细胞中易于表达。Eomes(+) CD4(+) T细胞在老年小鼠中、在结肠炎的T细胞转移模型的淋巴细胞减少条件下以及口服抗原后积累。然而,尽管有表达,但CD4(+) T细胞中Eomes的基因缺失既不影响IFN-γ的产生,也不会增加Th2或Th17反应。相反,Eomes缺陷有利于老年小鼠中Foxp3(+)细胞的积累,在Eomes缺陷的初始CD4(+) T细胞体内分化后,以及以细胞内在方式对口服抗原的反应中。在体外调节性T细胞诱导过程中强制表达Eomes也会降低Foxp3转录。同样,与野生型CD4(+) T细胞相比,旁观者Eomes缺陷的CD4(+) T细胞在预防实验性自身免疫性脑脊髓炎方面更有效。Eomes缺陷的CD4(+) T细胞这种增强的反式抑制EAE的能力与Foxp3(+)细胞频率的增加有关。我们的数据确定了Eomes在CD4(+) T细胞中的新作用,并表明Eomes表达可能通过限制Foxp3诱导起作用,这可能有助于EOMES与多发性硬化易感性的关联。