Department of Experimental and Clinical Medicine and DENOTHE Center, University of Florence, Florence, Italy.
Eur J Immunol. 2014 Mar;44(3):654-61. doi: 10.1002/eji.201344047. Epub 2013 Dec 27.
Human Th17 cells have a limited proliferative capacity compared to other T-cell subsets. We have shown that human Th17 cells display impaired IL-2 production due to IL-4-induced gene 1 (IL4I1) upregulation. Here, we show that in human Th17 cells, IL4I1 also maintains high levels of Tob1, a member of the Tob/BTG (B-cell traslocation gene) antiproliferative protein family, which prevents cell-cycle progression mediated by TCR stimulation. Indeed, Th17 cells exhibited higher levels of Tob1 than Th1 cells in both resting and TCR-activated conditions. Accordingly, the expression of positive regulators of the cell cycle (cyclin A, B, C, and E and Cdk2), as well as of Skp2, which promotes Tob1 degradation, was lower in Th17 cells than in Th1 cells. Tob1 expression in human Th17 cells correlated with both RAR (retinoic acid receptor)-related orphan receptor C (RORC) and IL4I1 levels. However, RORC was not directly involved in the regulation of Tob1 expression, whereas IL4I1 silencing in Th17 cells induced a substantial decrease of Tob1 expression. These data suggest that IL4I1 upregulation in human Th17 cells limits their TCR-mediated expansion not only by blocking the molecular pathway involved in the activation of the IL-2 promoter, but also by maintaining high levels of Tob1, which impairs entry into the cell cycle.
与其他 T 细胞亚群相比,人类 Th17 细胞的增殖能力有限。我们已经表明,由于 IL-4 诱导基因 1(IL4I1)的上调,人类 Th17 细胞显示出 IL-2 产生受损。在这里,我们表明在人类 Th17 细胞中,IL4I1 还维持 Tob1 的高水平,Tob1 是 Tob/BTG(B 细胞易位基因)抗增殖蛋白家族的成员,可防止 TCR 刺激介导的细胞周期进程。事实上,在静止和 TCR 激活条件下,Th17 细胞比 Th1 细胞具有更高水平的 Tob1。相应地,细胞周期的正调节剂(周期蛋白 A、B、C 和 E 和 Cdk2)的表达,以及促进 Tob1 降解的 Skp2 的表达,在 Th17 细胞中均低于 Th1 细胞。人 Th17 细胞中 Tob1 的表达与 RAR(视黄酸受体)相关孤儿受体 C(RORC)和 IL4I1 水平相关。然而,RORC 并未直接参与 Tob1 表达的调节,而 Th17 细胞中 IL4I1 的沉默诱导了 Tob1 表达的显著降低。这些数据表明,人 Th17 细胞中 IL4I1 的上调不仅通过阻断涉及 IL-2 启动子激活的分子途径,而且通过维持高水平的 Tob1 来限制其 TCR 介导的扩增,从而损害细胞周期的进入。