环状肉芽肿
体外
二甲双胍
巨噬细胞
可药性
羟基氯喹
肉芽肿
医学
氧化磷酸化
结节病
免疫学
炎症
药物发现
生物
药物重新定位
癌症研究
核糖核酸
疾病
慢性肉芽肿性疾病
线粒体
药品
计算生物学
TLR7型
人体皮肤
生物信息学
基因
药理学
作者
Manuel Huerta Arana,Henning Klapproth,Michal A. Stanczak,Luisa Bopp,Karla Witschurke,Robert Seitz,Maria Lopéz Martinez,Jan Zamek,Sinika Henschke,Nisha Rana,David O’Sullivan,Joy Steinkamp,Jan-Wilm Lackmann,William Damsky,Esther von Stebut,David E. Sanin,Paola Zigrino,Ramon I. Klein Geltink,Edward J. Pearce,Erika L. Pearce
出处
期刊:Science Advances
[American Association for the Advancement of Science]
日期:2026-05-29
卷期号:12 (22)
标识
DOI:10.1126/sciadv.aea0773
摘要
Granuloma annulare (GA) and cutaneous sarcoidosis (cSAR) have an overlapping immunopathology, in which the aberrant activation of macrophages by IFN-γ constitutes a central driver. Nevertheless, the molecular understanding in GA and cSAR macrophages remains limited. We reanalyzed single-cell RNA sequencing data of GA and cSAR and performed in vitro experiments with primary human cells showing that oxidative phosphorylation (OXPHOS) is a dominant metabolic pathway in IFN-γ–activated macrophages. Furthermore, we identify an IFN-γ–induced response network in GA and cSAR macrophages, sensitive to electron transport chain (ETC) inhibitors. Guanylate-binding protein 1 (GBP1) was central in controlling IFN-γ–mediated macrophage activation. Meanwhile, inhibition of IFN-γ signaling, ETC complexes, and GBP1 reduced granuloma formation in a human in vitro model. Metformin, a clinically used ETC complex I inhibitor, suppressed IFN-γ activation of macrophages and in vitro granulomas. Together, we suggest that OXPHOS and GBP1 represent druggable targets in granulomatous diseases and that drug repurposing of metformin is a possible strategy.
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