Kasprowicz Deborah J, Droin Nathalie, Soper David M, Ramsdell Fred, Green Douglas R, Ziegler Steven F
Benaroya Research Institute at Virginia Mason, Seattle, WA 98101, USA.
Eur J Immunol. 2005 Dec;35(12):3424-32. doi: 10.1002/eji.200526339.
The forkhead-family transcription factor FoxP3 is important for the development and function of CD4+CD25+ regulatory T cells. While the overall phenotypic effects of FoxP3 expression are evident, the mechanism by which FoxP3 regulates T cell activation is not well understood. CD4+ T cells from mice that express a FoxP3 Tg are refractory to TCR-mediated stimulation, failing to proliferate or produce cytokines, but possess suppressive activity towards normal T cells. In this report we show that these T cells express elevated levels of mRNA for pro-apoptotic genes and undergo rapid apoptosis following stimulation. These T cells also display slower cell cycle transit following activation, suggesting that FoxP3 is capable of regulating the ability of T cells to respond to TCR-mediated activation. Lastly, we show that contrary to expected results, under Th1 or Th2 driving conditions, CD4+ T cells from FoxP3 Tg mice differentiate into effector cells. Concomitant with differentiation is a loss of FoxP3 mRNA and protein. These data demonstrate that FoxP3 levels regulate T cell function, and that FoxP3 itself is dynamically regulated during effector T cell differentiation.
叉头盒家族转录因子FoxP3对CD4+CD25+调节性T细胞的发育和功能至关重要。虽然FoxP3表达的总体表型效应很明显,但FoxP3调节T细胞活化的机制尚不清楚。来自表达FoxP3转基因的小鼠的CD4+ T细胞对TCR介导的刺激具有抗性,无法增殖或产生细胞因子,但对正常T细胞具有抑制活性。在本报告中,我们表明这些T细胞促凋亡基因的mRNA水平升高,刺激后会迅速凋亡。这些T细胞在激活后也表现出较慢的细胞周期进程,表明FoxP3能够调节T细胞对TCR介导的激活作出反应的能力。最后,我们表明,与预期结果相反,在Th1或Th2驱动条件下,来自FoxP3转基因小鼠的CD4+ T细胞分化为效应细胞。伴随分化的是FoxP3 mRNA和蛋白质的丢失。这些数据表明FoxP3水平调节T细胞功能,并且FoxP3本身在效应T细胞分化过程中受到动态调节。