Department of Allergy and Rheumatology, Graduate School of Medicine, The University of Tokyo, Tokyo, Japan.
Department of Rheumatology and Allergy, IMSUT Hospital, The Institute of Medical Science, The University of Tokyo, Tokyo, Japan.
Sci Rep. 2017 Apr 26;7:46037. doi: 10.1038/srep46037.
T cell lymphopenia results in peripheral homeostatic expansion to maintain the T cell immune system, which is termed lymphopenia-induced proliferation (LIP). LIP is a potential risk for expanding autoreactive clones to become pathogenic in human and murine autoimmune diseases. However, the ontogeny of T cells that induce autoantibody production by autoreactive B cells in LIP remains unclear. Transfer of CD4CD25 conventional T (Tc) cells into T-cell-deficient athymic nude mice has been previously reported as a LIP-induced autoimmune model which develops organ-specific autoimmune diseases and systemic antinuclear antibodies (ANAs). We show here that via LIP in this model, Tc cells proliferated and differentiated into PD-1CXCR5 B-helper T cells, which promoted splenic germinal center (GC) formation, provided help for autoantibody-producing B cells, and had distinctive features of follicular helper T (Tfh) cells except that they do not express high CXCR5. Intestinal microbiota were essential for their generation, since depletion of them in recipient mice by antibiotics resulted in a reduction of LIP-induced PD-1CXCR5 B-helper T cells and an amelioration of autoimmune responses. Our findings will contribute to the elucidation of the mechanism of lymphopenia-induced autoimmunity and autoantibody production, and will pave the way for microbiota-targeted novel therapeutic approaches to systemic autoimmune diseases.
T 细胞淋巴细胞减少导致外周同源性扩张以维持 T 细胞免疫系统,这被称为淋巴细胞减少诱导的增殖(LIP)。LIP 是在人类和鼠类自身免疫性疾病中使自身反应性克隆扩展为致病性的潜在风险。然而,LIP 中诱导自身反应性 B 细胞产生自身抗体的 T 细胞的个体发生仍然不清楚。先前已经报道,将 CD4CD25 常规 T(Tc)细胞转移到 T 细胞缺陷的裸鼠中是一种 LIP 诱导的自身免疫模型,该模型会发展为器官特异性自身免疫疾病和全身性抗核抗体(ANA)。在这里我们表明,通过该模型中的 LIP,Tc 细胞增殖并分化为 PD-1CXCR5 B 辅助 T 细胞,促进了脾脏生发中心(GC)的形成,为产生自身抗体的 B 细胞提供了帮助,并且具有滤泡辅助 T(Tfh)细胞的独特特征,除了它们不表达高 CXCR5 之外。肠道微生物群对于它们的产生是必不可少的,因为在受体小鼠中通过抗生素耗尽它们会导致 LIP 诱导的 PD-1CXCR5 B 辅助 T 细胞减少和自身免疫反应改善。我们的发现将有助于阐明淋巴细胞减少诱导的自身免疫和自身抗体产生的机制,并为针对系统性自身免疫性疾病的微生物群靶向新型治疗方法铺平道路。