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Critical role of Bcl11b in suppressor function of T regulatory cells and prevention of inflammatory bowel disease.Bcl11b 在调节性 T 细胞抑制功能中的关键作用及其对炎症性肠病的预防作用。
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Clinical perspectives for regulatory T cells in transplantation tolerance.移植耐受中的调节性 T 细胞的临床观点。
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The USP7/Dnmt1 complex stimulates the DNA methylation activity of Dnmt1 and regulates the stability of UHRF1.USP7/Dnmt1 复合物可刺激 Dnmt1 的 DNA 甲基化活性,并调节 UHRF1 的稳定性。
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Regulatory T cells as modulators of B cell antibody production.调节性T细胞作为B细胞抗体产生的调节因子。
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Genetic analysis of basophil function in vivo.体内嗜碱性粒细胞功能的遗传分析。
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DNA methylation and demethylation in mammals.哺乳动物中的 DNA 甲基化和去甲基化。
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Regulation and function of DNA methylation in plants and animals.DNA 甲基化在动植物中的调控和功能。
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Usp7 and Uhrf1 control ubiquitination and stability of the maintenance DNA methyltransferase Dnmt1.USP7 和 UHRF1 控制维持性 DNA 甲基转移酶 Dnmt1 的泛素化和稳定性。
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Control of DNMT1 abundance in epigenetic inheritance by acetylation, ubiquitylation, and the histone code.通过乙酰化、泛素化和组蛋白密码控制 DNA 甲基转移酶 1 的丰度在表观遗传遗传中的作用。
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Foxp3+ T 调节细胞需要 DNA 甲基转移酶 1 的表达,以防止致命自身免疫的发生。

Foxp3+ T-regulatory cells require DNA methyltransferase 1 expression to prevent development of lethal autoimmunity.

机构信息

Division of Transplant Immunology, Department of Pathology and Laboratory Medicine, Children's Hospital of Philadelphia, Philadelphia, PA, USA.

出版信息

Blood. 2013 May 2;121(18):3631-9. doi: 10.1182/blood-2012-08-451765. Epub 2013 Feb 26.

DOI:10.1182/blood-2012-08-451765
PMID:23444399
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3643763/
Abstract

Protocols to use Foxp3+ T-regulatory (Treg) cells for cellular therapy, especially postallogeneic stem cell transplantation, are currently being developed and tested by various groups. Inhibitors of DNA methyltransferase (Dnmt) enzymes have been advocated as a means to promote and stabilize Foxp3 expression in Tregs undergoing expansion in vitro before their injection in vivo. We investigated the effects of conditionally deleting two Dnmt enzymes that co-immunoprecipitated with Foxp3 in Treg isolates. Deletion of Dnmt1, but not Dnmt3a, decreased the numbers and function of peripheral Tregs and impaired conversion of conventional T cells into Foxp3+ Tregs under polarizing conditions. Importantly, mice with conditional deletion of Dnmt1 in their Tregs died of autoimmunity by 3 to 4 weeks of age unless they were rescued by perinatal transfer of wild-type Tregs. Conditional Dnmt1 deletion did not affect methylation of CpG sites within Foxp3 but decreased global DNA methylation and altered Treg expression of several hundred pro-inflammatory and other genes. Hence, Dnmt1 is necessary for maintenance of the core gene program underlying Treg development and function, and its deletion within the Treg lineage leads to lethal autoimmunity. These data suggest that caution may be warranted when considering the use of DNMT inhibitors in development of Treg-based cellular therapies.

摘要

目前,许多研究小组正在开发和测试使用 Foxp3+T 调节性(Treg)细胞进行细胞治疗的方案,特别是在同种异体干细胞移植后。DNA 甲基转移酶(Dnmt)抑制剂已被提倡作为一种在体内注射之前在体外扩增 Treg 中促进和稳定 Foxp3 表达的方法。我们研究了条件性删除与 Treg 中 Foxp3 共免疫沉淀的两种 Dnmt 酶对 Treg 分离物的影响。与 Dnmt3a 不同,Dnmt1 的缺失减少了外周 Treg 的数量和功能,并在极化条件下损害了常规 T 细胞向 Foxp3+Treg 的转化。重要的是,除非通过围产期转移野生型 Treg 进行挽救,否则在 Treg 中条件性删除 Dnmt1 的小鼠会在 3 至 4 周龄时死于自身免疫,除非通过围产期转移野生型 Treg 进行挽救。条件性 Dnmt1 缺失不影响 Foxp3 内 CpG 位点的甲基化,但会降低全局 DNA 甲基化并改变 Treg 表达几百个促炎和其他基因。因此,Dnmt1 是维持 Treg 发育和功能的核心基因程序所必需的,其在 Treg 谱系中的缺失会导致致命的自身免疫。这些数据表明,在开发基于 Treg 的细胞治疗时,使用 DNMT 抑制剂可能需要谨慎。