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种系FoxP3突变小鼠的稳态增殖及其对致命性自身免疫的作用。

Homeostatic proliferation in the mice with germline FoxP3 mutation and its contribution to fatal autoimmunity.

作者信息

Chang Xing, Zheng Pan, Liu Yang

机构信息

Division of Immunotherapy, Section of General Surgery, Department of Surgery, University of Michigan Medical Center, Ann Arbor, MI 48109, USA.

出版信息

J Immunol. 2008 Aug 15;181(4):2399-406. doi: 10.4049/jimmunol.181.4.2399.

Abstract

FoxP3 has emerged as a critical regulator for the development and function of regulatory T cells. Recent studies by several groups have demonstrated that FoxP3 is expressed outside T cell lineages. In this context, we have reported that germline mutation of FoxP3 caused defective thymopoiesis, although its potential contribution to autoimmune diseases has not been analyzed. In this study, we report that, during perinatal period, germline mutation of FoxP3 in scurfy mice caused lymphopenia in the spleen and massive homeostatic proliferation, characterized by the independence from cognate Ags and expression of bona fide markers for homeostatic proliferation. The homeostatic proliferation is suppressed by increases in T cell numbers but not by adoptive transfer of regulatory T cells (Treg). Adoptive transfer of Treg-containing bulk T cells was dramatically more effective than transfer of either Treg alone or Treg-depleted CD4 T cells in curing the scurfy mice. Our data demonstrated that FoxP3 mutation not only ablates Treg, but also dramatically increased homeostatic proliferation during the perinatal period. Homeostatic proliferation acts in concert with Treg defects in causing acute and fatal autoimmune diseases in the FoxP3 mutant mice. These results demonstrated that germline mutation of FoxP3 caused two defects that work in concert to cause lethal autoimmunity.

摘要

FoxP3已成为调节性T细胞发育和功能的关键调节因子。多个研究小组最近的研究表明,FoxP3在T细胞谱系之外表达。在此背景下,我们报道了FoxP3的种系突变导致胸腺生成缺陷,尽管其对自身免疫性疾病的潜在影响尚未得到分析。在本研究中,我们报告,在围产期,scurfy小鼠中FoxP3的种系突变导致脾脏淋巴细胞减少和大量稳态增殖,其特征是不依赖同源抗原以及表达稳态增殖的真正标志物。稳态增殖可被T细胞数量增加所抑制,但不能被调节性T细胞(Treg)的过继转移所抑制。含Treg的大量T细胞的过继转移在治愈scurfy小鼠方面比单独转移Treg或去除Treg的CD4 T细胞明显更有效。我们的数据表明,FoxP3突变不仅消除了Treg,而且在围产期显著增加了稳态增殖。稳态增殖与Treg缺陷共同作用,在FoxP3突变小鼠中引发急性和致命的自身免疫性疾病。这些结果表明,FoxP3的种系突变导致了两个共同作用导致致命自身免疫的缺陷。

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