Department of Immunology, Peking University Health Science Center, Beijing, China.
State Key Laboratory of Molecular Biology, CAS Center for Excellence in Molecular Cell Science, Institute of Biochemistry and Cell Biology, Chinese Academy of Sciences, Shanghai, China.
Front Immunol. 2019 Oct 18;10:2486. doi: 10.3389/fimmu.2019.02486. eCollection 2019.
Regulatory T cells (Tregs) are engaged in maintaining immune homeostasis and preventing autoimmunity. Treg cells include thymic Treg cells and peripheral Treg cells, both of which can suppress the immune response via multiple distinct mechanisms. The differentiation, proliferation, suppressive function and survival of Treg cells are affected by distinct energy metabolic programs. Tissue-resident Treg cells hold unique features in comparison with the lymphoid organ Treg cells. Foxp3 transcription factor is a lineage master regulator for Treg cell development and suppressive activity. Accumulating evidence indicates that the activity of Foxp3 protein is modulated by various post-translational modifications (PTMs), including phosphorylation, O-GlcNAcylation, acetylation, ubiquitylation and methylation. These modifications affect multiple aspects of Foxp3 function. In this review, we define features of Treg cells and roles of Foxp3 in Treg biology, and summarize current research in PTMs of Foxp3 protein involved in modulating Treg function. This review also attempts to define Foxp3 dimer modifications relevant to mediating Foxp3 activity and Treg suppression. Understanding Foxp3 protein features and modulation mechanisms may help in the design of rational therapies for immune diseases and cancer.
调节性 T 细胞(Tregs)参与维持免疫稳态和防止自身免疫。Treg 细胞包括胸腺 Treg 细胞和外周 Treg 细胞,它们都可以通过多种不同的机制抑制免疫反应。Treg 细胞的分化、增殖、抑制功能和存活受到不同的能量代谢程序的影响。与淋巴器官 Treg 细胞相比,组织驻留 Treg 细胞具有独特的特征。Foxp3 转录因子是 Treg 细胞发育和抑制活性的谱系主调控因子。越来越多的证据表明,Foxp3 蛋白的活性受多种翻译后修饰(PTMs)的调节,包括磷酸化、O-GlcNAc 化、乙酰化、泛素化和甲基化。这些修饰影响 Foxp3 功能的多个方面。在这篇综述中,我们定义了 Treg 细胞的特征和 Foxp3 在 Treg 生物学中的作用,并总结了目前关于 Foxp3 蛋白翻译后修饰在调节 Treg 功能中的研究。本综述还试图定义与介导 Foxp3 活性和 Treg 抑制相关的 Foxp3 二聚体修饰。了解 Foxp3 蛋白的特征和调节机制可能有助于设计针对免疫疾病和癌症的合理治疗方法。