FOXP3型
自身免疫
外显子
生物
基因亚型
选择性拼接
免疫学
免疫系统
生发中心
调节性T细胞
免疫失调
T细胞
细胞生物学
基因
遗传学
抗体
白细胞介素2受体
B细胞
作者
Jianguang Du,Qun Wang,Shuangshuang Yang,Si Chen,Yongyao Fu,Sabine Spath,Phillip P. Domeier,David Hagin,Stephanie Anover-Sombke,Maya Haouili,Sheng Liu,Jun Wan,Lei Han,Juli Liu,Lei Yang,Neel Sangani,Yujing Li,Xiongbin Lu,Sarath Chandra Janga,Mark H. Kaplan,Troy R. Torgerson,Steven F. Ziegler,Baohua Zhou
出处
期刊:Science immunology
[American Association for the Advancement of Science (AAAS)]
日期:2022-06-24
卷期号:7 (72)
被引量:4
标识
DOI:10.1126/sciimmunol.abo5407
摘要
Differing from the mouse Foxp3 gene that encodes only one protein product, human FOXP3 encodes two major isoforms through alternative splicing—a longer isoform (FOXP3 FL) containing all the coding exons and a shorter isoform lacking the amino acids encoded by exon 2 (FOXP3 ΔE2). The two isoforms are naturally expressed in humans, yet their differences in controlling regulatory T cell phenotype and functionality remain unclear. In this study, we show that patients expressing only the shorter isoform fail to maintain self-tolerance and develop immunodeficiency, polyendocrinopathy, and enteropathy X-linked (IPEX) syndrome. Mice with Foxp3 exon 2 deletion have excessive follicular helper T (T FH ) and germinal center B (GC B) cell responses, and develop systemic autoimmune disease with anti-dsDNA and antinuclear autoantibody production, as well as immune complex glomerulonephritis. Despite having normal suppressive function in in vitro assays, regulatory T cells expressing FOXP3 ΔE2 are unstable and sufficient to induce autoimmunity when transferred into Tcrb -deficient mice. Mechanistically, the FOXP3 ΔE2 isoform allows increased expression of selected cytokines, but decreased expression of a set of positive regulators of Foxp3 without altered binding to these gene loci. These findings uncover indispensable functions of the FOXP3 exon 2 region, highlighting a role in regulating a transcriptional program that maintains T reg stability and immune homeostasis.
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