先天免疫系统
状态5
调节器
基因剔除小鼠
免疫系统
免疫学
癌症研究
心肌梗塞
效应器
细胞生物学
受体
表观遗传学
信号转导
生物
炎症
医学
西妥因1
免疫
乙酰化
自身免疫
免疫疗法
机制(生物学)
先天性淋巴细胞
获得性免疫系统
细胞凋亡
炎症体
CTLA-4号机组
周边公差
作者
Yuxiao Feng,Rongjiao Shao,Yi Shi,Haibei Sun,Chen Chi,Weizhuo Liu,Ben He,Wenzheng Han,Xumin Hou
标识
DOI:10.1186/s12964-026-02824-0
摘要
Group 2 innate lymphoid cells (ILC2s) are recognized as key innate immune effectors that facilitate early cardiac recovery after myocardial infarction (MI); however, the underlying mechanisms by which they mediate this repair remain largely unclear. To investigate the role of ILC2-derived interleukin-9 (IL-9), we employed ILC2-specific IL-9 knockout mice and administered exogenous IL-9 in a murine MI model. The mechanism of regulatory T cells (Tregs) activation was further examined through Treg-specific Sirt1 knockout in vitro, focusing on STAT5 acetylation and related signaling. We demonstrate that ILC2-derived IL-9 is essential for post-MI repair by activating Tregs. IL-9 binding to the IL-9 receptor on Tregs upregulates the deacetylase Sirt1, and Sirt1 deletion abolishes IL-9-driven Treg activation. Furthermore, Sirt1 directly interacts with STAT5, promoting its deacetylation and phosphorylation, leading to the transcriptional activation of genes essential for Treg function. Our study identifies IL-9 as a key regulator of Treg activation via a novel Sirt1-STAT5 epigenetic pathway, which promotes tissue repair after MI. These findings reveal a previously unrecognized immunomodulatory axis with significant therapeutic potential for ischemic heart disease.
科研通智能强力驱动
Strongly Powered by AbleSci AI