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The mutant leucine-zipper domain impairs both dimerization and suppressive function of Foxp3 in T cells

机译:突变的亮氨酸拉链域损害T细胞中Foxp3的二聚化和抑制功能

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摘要

Regulatory T cells that express the Foxp3 transcription factor play important roles in preventing autoimmune diseases. Although several studies have demonstrated that the lack of the forkhead DNA-binding domain of Foxp3 caused severe autoimmune disease in scurfy mutant mice, the other functional domains of Foxp3 are less well characterized. Here, we show that the deletion of glutamic acid (Delta E250) in the leucine-zipper domain of Foxp3 causes a loss of hyporesponsiveness when compared with wild-type Foxp3 upon antigenic stimulation. CD4 T cells that ectopically express the glutamic acid mutant show significant losses of suppressor activity both in vitro and in vivo. We also demonstrate that regulation of both Th1- and Th2-type cytokine secretion in CD4 T cells that express wild-type Foxp3 is significantly altered by the deletion of glutamic acid. Defects are also observed in the expression of adhesion molecules, such as L-selectin (CD62L) and CD103, suggesting an important role of glutamic acid in the migratory behavior of regulatory T cells. Finally, this mutation reduces transcriptional repressor activity and impairs the homodimerization of Foxp3. Taken together, our results provide insight into the mechanism that controls autoimmune diseases via the deletion of this single glutamic acid residue in the leucine-zipper domain of Foxp3.
机译:表达Foxp3转录因子的调节性T细胞在预防自身免疫性疾病中起重要作用。尽管一些研究表明Foxp3的叉头DNA结合结构域的缺乏导致了臭皮病的突变小鼠中的严重的自身免疫性疾病,但Foxp3的其他功能性结构域却没有得到很好的表征。在这里,我们显示Foxp3的亮氨酸-拉链域中的谷氨酸(Delta E250)的缺失与抗原刺激下的野生型Foxp3相比,会引起低反应性的丧失。异位表达谷氨酸突变体的CD4 T细胞在体外和体内均表现出明显的抑制活性丧失。我们还证明了表达野生型Foxp3的CD4 T细胞中Th1和Th2型细胞因子分泌的调节通过谷氨酸的缺失而显着改变。还观察到粘附分子如L-选择蛋白(CD62L)和CD103的表达存在缺陷,表明谷氨酸在调节性T细胞的迁徙行为中起重要作用。最后,这种突变降低了转录阻遏物的活性,并削弱了Foxp3的同源二聚化。两者合计,我们的结果提供了洞察,通过删除Foxp3的亮氨酸拉链域中的单个谷氨酸残基来控制自身免疫性疾病的机制。

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