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铁蛋白重链支持调节性 T 细胞谱系的稳定性和功能。

Ferritin heavy chain supports stability and function of the regulatory T cell lineage.

机构信息

Instituto Gulbenkian de Ciência, Oeiras, Portugal.

International Institutes of Medicine, the Fourth Affiliated Hospital of Zhejiang University, School of Medicine, Yiwu, Zhejiang, China.

出版信息

EMBO J. 2024 Apr;43(8):1445-1483. doi: 10.1038/s44318-024-00064-x. Epub 2024 Mar 18.

Abstract

Regulatory T (TREG) cells develop via a program orchestrated by the transcription factor forkhead box protein P3 (FOXP3). Maintenance of the TREG cell lineage relies on sustained FOXP3 transcription via a mechanism involving demethylation of cytosine-phosphate-guanine (CpG)-rich elements at conserved non-coding sequences (CNS) in the FOXP3 locus. This cytosine demethylation is catalyzed by the ten-eleven translocation (TET) family of dioxygenases, and it involves a redox reaction that uses iron (Fe) as an essential cofactor. Here, we establish that human and mouse TREG cells express Fe-regulatory genes, including that encoding ferritin heavy chain (FTH), at relatively high levels compared to conventional T helper cells. We show that FTH expression in TREG cells is essential for immune homeostasis. Mechanistically, FTH supports TET-catalyzed demethylation of CpG-rich sequences CNS1 and 2 in the FOXP3 locus, thereby promoting FOXP3 transcription and TREG cell stability. This process, which is essential for TREG lineage stability and function, limits the severity of autoimmune neuroinflammation and infectious diseases, and favors tumor progression. These findings suggest that the regulation of intracellular iron by FTH is a stable property of TREG cells that supports immune homeostasis and limits the pathological outcomes of immune-mediated inflammation.

摘要

调节性 T(TREG)细胞通过转录因子叉头框蛋白 P3(FOXP3)协调的程序发育。TREG 细胞谱系的维持依赖于通过涉及 FOXP3 基因座中富含胞嘧啶-磷酸-鸟嘌呤(CpG)的保守非编码序列(CNS)的去甲基化来持续进行 FOXP3 转录的机制。这种胞嘧啶去甲基化由十号染色体缺失的转录因子(TET)家族双加氧酶催化,涉及使用铁(Fe)作为必需辅助因子的氧化还原反应。在这里,我们确定人与小鼠的 TREG 细胞表达铁调节基因,包括编码铁蛋白重链(FTH)的基因,与传统的辅助性 T 细胞相比,其表达水平相对较高。我们表明,TREG 细胞中的 FTH 表达对于免疫稳态是必需的。从机制上讲,FTH 支持 TET 催化的 FOXP3 基因座中富含 CpG 的 CNS1 和 2 序列的去甲基化,从而促进 FOXP3 转录和 TREG 细胞稳定性。这个过程对于 TREG 谱系的稳定性和功能至关重要,可限制自身免疫性神经炎症和传染病的严重程度,并有利于肿瘤进展。这些发现表明,FTH 对细胞内铁的调节是 TREG 细胞的一个稳定特性,可支持免疫稳态并限制免疫介导的炎症的病理结果。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bb35/11021483/189c06e26568/44318_2024_64_Fig1_HTML.jpg

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