Schubert L A, Jeffery E, Zhang Y, Ramsdell F, Ziegler S F
Immunology Program, Virginia Mason Research Center, Seattle, Washington 98101, USA.
J Biol Chem. 2001 Oct 5;276(40):37672-9. doi: 10.1074/jbc.M104521200. Epub 2001 Aug 1.
We have recently identified and cloned Foxp3, the gene defective in mice with the scurfy mutation. The immune dysregulation documented in these mice and in humans with mutations in the orthologous gene indicates that the foxp3 gene product, scurfin, is involved in the regulation of T cell activation and differentiation. The autoimmune state observed in these patients with the immune dysregulation polyendocrinopathy, enteropathy, X-linked syndrome, or X-linked autoimmunity-allergic dysregulation syndrome also points to a critical role for scurfin in the regulation of T cell homeostasis. FOXP3 encodes a novel member of the forkhead family of transcription factors. Here we demonstrate that this structural domain is required for nuclear localization and DNA binding. Scurfin, transiently expressed in heterologous cells, represses transcription of a reporter containing a multimeric forkhead binding site. Upon overexpression in CD4 T cells, scurfin attenuates activation-induced cytokine production and proliferation. We have identified FKH binding sequences adjacent to critical NFAT regulatory sites in the promoters of several cytokine genes whose expression is sensitive to changes in SFN abundance. Our findings indicate that the ability of scurfin to bind DNA, and presumably repress transcription, plays a paramount role in determining the amplitude of the response of CD4 T cells to activation.
我们最近鉴定并克隆了Foxp3,即患有鳞屑突变的小鼠中存在缺陷的基因。在这些小鼠以及直系同源基因突变的人类中记录到的免疫失调表明,foxp3基因产物scurfin参与了T细胞活化和分化的调节。在患有免疫失调性多内分泌病、肠病、X连锁综合征或X连锁自身免疫性过敏失调综合征的这些患者中观察到的自身免疫状态也表明scurfin在T细胞稳态调节中起关键作用。FOXP3编码叉头转录因子家族的一个新成员。在这里我们证明这个结构域是核定位和DNA结合所必需的。在异源细胞中瞬时表达的scurfin抑制含有多聚体叉头结合位点的报告基因的转录。在CD4 T细胞中过表达时,scurfin减弱激活诱导的细胞因子产生和增殖。我们在几个细胞因子基因启动子中与关键NFAT调节位点相邻处鉴定出FKH结合序列,这些基因的表达对SFN丰度变化敏感。我们的研究结果表明,scurfin结合DNA并可能抑制转录的能力在决定CD4 T细胞对激活的反应幅度中起至关重要的作用。