Lee Sang-Myeong, Gao Beixue, Fang Deyu
Department of Otolaryngology-Head and Neck Surgery, University of Missouri-Columbia School of Medicine 65212, USA.
Blood. 2008 Apr 1;111(7):3599-606. doi: 10.1182/blood-2007-09-115014. Epub 2008 Jan 25.
Regulatory T cells (Tregs) have been shown to play a crucial role in maintaining self-tolerance and suppressing autoimmunity. The forkhead transcription factor, FoxP3, is a key molecule necessary and sufficient for Tregs development and function. However, the molecular mechanisms by which FoxP3 regulates the phenotypic (anergic) and the functional (suppressive) characteristics of Tregs are not well defined. Here we found that the promoter DNA-binding activity of AP-1 transcription factors is selectively inhibited in the naturally occurring CD4+ CD25+ Tregs from mice. The impaired AP-1 DNA binding is not the result of the decreased nuclear translocation of AP-1 family transcription factors, including c-Jun, JunB, and c-Fos. FoxP3 significantly suppresses both the transcriptional activity and promoter DNA-binding of AP-1 by interacting with c-Jun. The N-terminus of FoxP3, but not its C-terminus forkhead domain, specifically interacts with phosphorylated c-Jun and alters c-Jun subnuclear distribution. This N-terminus of FoxP3 with nuclear localization signals (FoxP3N/NLS) is able to suppress AP-1 transcriptional activity. Ectopic expression of FoxP3N/NLS sufficiently induces the unresponsiveness of mouse primary CD4+ CD25- T cells, whereas the full-length FoxP3 is required for the suppressive functions of Tregs. These findings uncover one of the mechanisms underlying how FoxP3 maintains the unresponsiveness of Tregs.
调节性T细胞(Tregs)已被证明在维持自身耐受和抑制自身免疫中起关键作用。叉头转录因子FoxP3是Tregs发育和功能所必需且充分的关键分子。然而,FoxP3调节Tregs表型(无反应性)和功能(抑制性)特征的分子机制尚不清楚。在这里,我们发现AP-1转录因子的启动子DNA结合活性在来自小鼠的天然存在的CD4+ CD25+ Tregs中被选择性抑制。AP-1 DNA结合受损不是包括c-Jun、JunB和c-Fos在内的AP-1家族转录因子核转位减少的结果。FoxP3通过与c-Jun相互作用显著抑制AP-1的转录活性和启动子DNA结合。FoxP3的N端而非其C端叉头结构域与磷酸化的c-Jun特异性相互作用并改变c-Jun的核内分布。具有核定位信号的FoxP3的这个N端(FoxP3N/NLS)能够抑制AP-1转录活性。FoxP3N/NLS的异位表达足以诱导小鼠原代CD4+ CD25- T细胞的无反应性,而全长FoxP3是Tregs抑制功能所必需的。这些发现揭示了FoxP3维持Tregs无反应性的潜在机制之一。