FOXP3型
免疫学
自身免疫
调节性T细胞
炎症
T细胞
条件基因敲除
生物
白细胞介素2受体
细胞生物学
免疫系统
表型
生物化学
基因
作者
Jinsam Chang,Antoine Bouchard,Yasser Bouklouch,Vincent Panneton,Joanna Li,Nikoletta Diamantopoulos,Saba Mohammaei,Roman Istomine,Fernando Alvarez,Ciriaco A. Piccirillo,Woong-Kyung Suh
出处
期刊:Journal of Immunology
[The American Association of Immunologists]
日期:2022-07-15
卷期号:209 (2): 301-309
被引量:2
标识
DOI:10.4049/jimmunol.2100897
摘要
ICOS is induced in activated T cells and its main role is to boost differentiation and function of effector T cells. ICOS is also constitutively expressed in a subpopulation of Foxp3+ regulatory T cells under steady-state condition. Studies using ICOS germline knockout mice or ICOS-blocking reagents suggested that ICOS has supportive roles in regulatory T (Treg) cell homeostasis, migration, and function. To avoid any compounding effects that may arise from ICOS-deficient non-Treg cells, we generated a conditional knockout system in which ICOS expression is selectively abrogated in Foxp3-expressing cells (ICOS FC mice). Compared to Foxp3-Cre control mice, ICOS FC mice showed a minor numerical deficit of steady-state Treg cells but did not show any signs of spontaneous autoimmunity, indicating that tissue-protective Treg populations do not heavily rely on ICOS costimulation. However, ICOS FC mice showed more severe inflammation in oxazolone-induced contact hypersensitivity, a model of atopic dermatitis. This correlated with elevated numbers of inflammatory T cells expressing IFN-γ and/or TNF-α in ICOS FC mice compared with the control group. In contrast, elimination of ICOS in all T cell compartments negated the differences, confirming that ICOS has a dual positive role in effector and Treg cells. Single-cell transcriptome analysis suggested that ICOS-deficient Treg cells fail to mature into T-bet+CXCR3+ "Th1-Treg" cells in the draining lymph node. Our results suggest that regimens that preferentially stimulate ICOS pathways in Treg cells might be beneficial for the treatment of Th1-driven inflammation.
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