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Fas配体的Gld突变增加了CD25 + CD4 +调节性T细胞的频率并上调细胞存活基因。

Gld mutation of Fas ligand increases the frequency and up-regulates cell survival genes in CD25+CD4+ TR cells.

作者信息

Mohamood Abdiaziz S, Trujillo Crystal J, Zheng Dongfeng, Jie Chunfa, Murillo Francisco Martinez, Schneck Jonathan P, Hamad Abdel Rahim A

机构信息

Department of Pathology, Johns Hopkins University School of Medicine, Baltimore, MD 21205, USA.

出版信息

Int Immunol. 2006 Aug;18(8):1265-77. doi: 10.1093/intimm/dxl057. Epub 2006 Jun 12.

Abstract

The Fas pathway and regulatory T (T(R)) cells play intertwining roles in controlling T cell tolerance through deletion and suppression of autoreactive T cells. Impairment of either mechanism causes severe T cell lymphoproliferation albeit with opposing outcomes. T cell lymphoproliferation induced by defective Fas pathway does not cause overt lymphocytic infiltration but rather prevents an important set of T cell-mediated autoimmune diseases. In contrast, deficiency in T(R) cell causes fulminant autoimmunity in very early life and fatal lymphocytic infiltration. These observations suggest existence of unidirectional fail/safe mechanism that compensate for defects in the Fas pathway but not in regulatory cells. To gain insights into how animals compensate for defects in the Fas system, we analyzed the impact of generalized lymphoproliferative disease (gld) mutation on survival, function and transcription profile of CD25+CD4+ T(R) cells. Our results show that all CD4 T cells expanded in gld mice. However, CD25+CD4+ T(R) cells are disproportionately increased in the pool of CD4 T cells perhaps due to their unique apoptosis phenotype. Freshly isolated CD25+CD4+ T(R) cells, unlike CD25-CD4+ T cells, are highly sensitive to FasL-induced apoptosis in the steady state. CD25+CD4+ T(R) cells that accumulate in gld mice express similar level of Foxp3, and have suppression potency and T(R) gene expression profile as wild-type CD25+CD4+ T(R) cells. Furthermore, the transcription profile of gld CD25+CD4+ T(R) cells is characterized by differential expression of genes involved in cell survival, metabolism and innate immune responses. These results provide a strong cellular and molecular basis for understanding why impaired Fas pathway prevents an important subset of T cell-mediated autoimmune diseases.

摘要

Fas信号通路和调节性T(T(R))细胞在通过清除和抑制自身反应性T细胞来控制T细胞耐受性方面发挥着相互交织的作用。这两种机制中的任何一种受损都会导致严重的T细胞淋巴增殖,尽管结果相反。由缺陷的Fas信号通路诱导的T细胞淋巴增殖不会导致明显的淋巴细胞浸润,反而能预防一系列重要的T细胞介导的自身免疫性疾病。相比之下,T(R)细胞缺陷会在生命早期导致暴发性自身免疫和致命的淋巴细胞浸润。这些观察结果表明存在一种单向的故障/安全机制,该机制可以弥补Fas信号通路的缺陷,但不能弥补调节性细胞的缺陷。为了深入了解动物如何弥补Fas系统的缺陷,我们分析了全身性淋巴增殖性疾病(gld)突变对CD25+CD4+ T(R)细胞的存活、功能和转录谱的影响。我们的结果表明,gld小鼠体内所有的CD4 T细胞都发生了扩增。然而,CD25+CD4+ T(R)细胞在CD4 T细胞池中不成比例地增加,这可能是由于它们独特的凋亡表型。与CD25-CD4+ T细胞不同,新鲜分离的CD25+CD4+ T(R)细胞在稳态下对FasL诱导的凋亡高度敏感。在gld小鼠中积累的CD25+CD4+ T(R)细胞表达与野生型CD25+CD4+ T(R)细胞相似水平的Foxp3,并且具有抑制能力和T(R)基因表达谱。此外,gld CD25+CD4+ T(R)细胞的转录谱的特征是参与细胞存活、代谢和固有免疫反应的基因表达存在差异。这些结果为理解为什么受损的Fas信号通路能预防T细胞介导的自身免疫性疾病的一个重要亚群提供了强大的细胞和分子基础。

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