先天性淋巴细胞
转录因子
IRF4公司
效应器
生物
免疫学
免疫
促炎细胞因子
细胞因子
细胞生物学
受体
淋巴细胞生成
转录调控
白细胞介素33
先天免疫系统
基因
信号转导
白细胞介素13
基因表达调控
抄写(语言学)
核糖核酸
过敏性炎症
TFE3型
细胞因子受体
白细胞介素9
作者
Patrycja M. Forster,Alexandra Preußer,Hiroshi Yano,Divija Deshpande,Wen Zhang,Anita Kowalczyk,Laura Velleman,Magdalena Dubik,Jazib Uddin,Elizabeth Emanuel,Pierre S. Leclère,Richard Mertens,Xuemei Gao,Michael Kofoed-Branzk,Anja Erika Hauser,Hans‐Willi Mittrücker,Andreas Diefenbach,David Artis,Christoph S. N. Klose
摘要
Type 2 immunity has evolved to protect against worms but becomes harmful when activated during allergic inflammation. Group 2 innate lymphoid cells (ILC2s) drive type 2 responses by rapidly secreting IL-5 and IL-13. The alarmins, IL-25, IL-33, and TSLP activate ILC2s and are linked to allergic diseases. However, how alarmins connect to the transcriptional networks driving type 2 effector functions remains elusive. Here, we performed RNA sequencing of ILC2s deficient in IL-25, IL-33, or TSLP pathway and identified the transcription factor Blimp-1 as an IL-33-regulated gene in ILC2s. While Blimp-1 was dispensable for ILC2 development, this transcription factor was required for type 2 cytokine production, driving eosinophilia or promoting worm expulsion. Blimp-1 deficiency resulted in reduced IRF4 expression, while Irf4-deficient ILC2s showed diminished Blimp-1 and IL-33 receptor expression, revealing a reciprocal Blimp-1-IRF4 circuit downstream of the IL-33 receptor. These findings expose the Blimp-1-IRF4 axis as an alarmin-regulated transcriptional network controlling ILC2 effector functions required for type 2 immunity.
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