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自身和微生物群衍生表位诱导 CD4 T 细胞失能并转化为 CD4Foxp3 调节性细胞。

Self and microbiota-derived epitopes induce CD4 T cell anergy and conversion into CD4Foxp3 regulatory cells.

机构信息

Institute for Biomedical Sciences, Georgia State University, Atlanta, GA, USA.

Mathematical Biosciences Institute, Ohio State University, Columbus, OH, USA.

出版信息

Mucosal Immunol. 2021 Mar;14(2):443-454. doi: 10.1038/s41385-020-00349-4. Epub 2020 Nov 2.

Abstract

The physiological role of T cell anergy induction as a key mechanism supporting self-tolerance remains undefined, and natural antigens that induce anergy are largely unknown. In this report, we used TCR sequencing to show that the recruitment of CD4CD44Foxp3CD73FR4 anergic (Tan) cells expands the CD4Foxp3 (Tregs) repertoire. Next, we report that blockade in peripherally-induced Tregs (pTregs) formation due to mutation in CNS1 region of Foxp3 or chronic exposure to a selecting self-peptide result in an accumulation of Tan cells. Finally, we show that microbial antigens from Akkermansia muciniphila commensal bacteria can induce anergy and drive conversion of naive CD4CD44Foxp3 T (Tn) cells to the Treg lineage. Overall, data presented here suggest that Tan induction helps the Treg repertoire to become optimally balanced to provide tolerance toward ubiquitous and microbiome-derived epitopes, improving host ability to avert systemic autoimmunity and intestinal inflammation.

摘要

T 细胞无能诱导作为支持自身耐受的关键机制的生理作用仍未确定,并且诱导无能的天然抗原在很大程度上是未知的。在本报告中,我们使用 TCR 测序表明,CD4CD44Foxp3CD73FR4 无能(Tan)细胞的募集扩展了 CD4Foxp3(Tregs)库。接下来,我们报告说,由于 Foxp3 的 CNS1 区域的突变或慢性暴露于选择的自身肽导致外周诱导的 Tregs(pTregs)形成受阻,会导致 Tan 细胞的积累。最后,我们表明 Akkermansia muciniphila 共生菌的微生物抗原可以诱导无能,并促使幼稚 CD4CD44Foxp3T(Tn)细胞向 Treg 谱系转化。总体而言,本文提供的数据表明,Tan 诱导有助于 Treg 库达到最佳平衡,从而对普遍存在的和微生物衍生的表位提供耐受性,提高宿主避免全身自身免疫和肠道炎症的能力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0e7b/7946630/f3ff5d65b396/41385_2020_349_Fig1_HTML.jpg

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