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染色质修饰酶Ezh2对激活后调节性T细胞身份的维持至关重要。

The chromatin-modifying enzyme Ezh2 is critical for the maintenance of regulatory T cell identity after activation.

作者信息

DuPage Michel, Chopra Gaurav, Quiros Jason, Rosenthal Wendy L, Morar Malika M, Holohan Dan, Zhang Ruan, Turka Laurence, Marson Alexander, Bluestone Jeffrey A

机构信息

Diabetes Center and Department of Medicine, University of California, San Francisco, San Francisco, CA 94143, USA.

Transplantation Biology Research Center, Massachusetts General Hospital, Harvard Medical School, Boston, MA 02129, USA.

出版信息

Immunity. 2015 Feb 17;42(2):227-238. doi: 10.1016/j.immuni.2015.01.007. Epub 2015 Feb 10.

Abstract

Regulatory T cells (Treg cells) are required for immune homeostasis. Chromatin remodeling is essential for establishing diverse cellular identities, but how the epigenetic program in Treg cells is maintained throughout the dynamic activation process remains unclear. Here we have shown that CD28 co-stimulation, an extracellular cue intrinsically required for Treg cell maintenance, induced the chromatin-modifying enzyme, Ezh2. Treg-specific ablation of Ezh2 resulted in spontaneous autoimmunity with reduced Foxp3(+) cells in non-lymphoid tissues and impaired resolution of experimental autoimmune encephalomyelitis. Utilizing a model designed to selectively deplete wild-type Treg cells in adult mice co-populated with Ezh2-deficient Treg cells, Ezh2-deficient cells were destabilized and failed to prevent autoimmunity. After activation, the transcriptome of Ezh2-deficient Treg cells was disrupted, with altered expression of Treg cell lineage genes in a pattern similar to Foxp3-deficient Treg cells. These studies reveal a critical role for Ezh2 in the maintenance of Treg cell identity during cellular activation.

摘要

调节性T细胞(Treg细胞)对于免疫稳态是必需的。染色质重塑对于建立多样的细胞特性至关重要,但Treg细胞中的表观遗传程序在整个动态激活过程中是如何维持的仍不清楚。在这里,我们表明CD28共刺激是Treg细胞维持内在所需的一种细胞外信号,它诱导了染色质修饰酶Ezh2。Treg细胞特异性敲除Ezh2导致自发自身免疫,非淋巴组织中Foxp3(+)细胞减少,实验性自身免疫性脑脊髓炎的消退受损。利用一个设计用于在与Ezh2缺陷型Treg细胞共居的成年小鼠中选择性清除野生型Treg细胞的模型,Ezh2缺陷型细胞不稳定,无法预防自身免疫。激活后,Ezh2缺陷型Treg细胞的转录组被破坏,Treg细胞谱系基因的表达改变,其模式类似于Foxp3缺陷型Treg细胞。这些研究揭示了Ezh2在细胞激活过程中维持Treg细胞特性方面的关键作用。

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