FOXP3 exon 2 controls Treg stability and autoimmunity

FOXP3 外显子 2 控制 Treg 稳定性和自身免疫

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作者:Jianguang Du ,Qun Wang ,Shuangshuang Yang ,Si Chen ,Yongyao Fu ,Sabine Spath ,Phillip 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

Abstract

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 (TFH) 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 Treg stability and immune homeostasis.

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