坦克结合激酶1
代谢物
衣康酸
化学
免疫系统
先天免疫系统
HEK 293细胞
下调和上调
新陈代谢
生物化学
细胞生物学
生物
酶
作用机理
IκB激酶
激酶
能量代谢
信号转导
获得性免疫系统
作者
Li Chai,Chaoqun Li,Xuefeng Wang,Yanyang Qin,Hemin Sun,Jie Du,Yang Liu,Dongmei Hu,Jianan Xiong,Zhiyuan Zhao,Rong Gong,Tao Wu,Meng Wu,Meng Nie,Jialin Gao,Jihui Jia,Chengjiang Gao,Wei Zhao,Huan Zhou,Dongwei Kang
出处
期刊:Cell Reports
[Cell Press]
日期:2025-09-27
卷期号:44 (10): 116336-116336
被引量:3
标识
DOI:10.1016/j.celrep.2025.116336
摘要
Perturbation of energy metabolism is an essential feature during infection and inflammation. TANK-binding kinase 1 (TBK1) is crucial for initiating the innate immune response against viral infection, although aberrant and ongoing TBK1 activation induces excessive production of type I interferons (IFN-I). Nonetheless, the mechanisms whereby energy metabolism controls TBK1 activation remain unclear. Here, we elucidate a mechanism linking energy metabolism to the inhibition of TBK1-induced IFN-I responses via the immune response gene 1 (IRG1)-itaconic acid axis. Mechanistically, itaconic acid and its derivatives alkylated TBK1 at Cys605, thereby disrupting TBK1 dimerization and rapid activation. IRG1, the enzyme that catalyzes itaconic acid production, is upregulated during late-phase viral infection and acts as a feedback regulator to restrain TBK1 activity. We developed itaconic acid-based compounds ITA-5/ITA-9 as alternative TBK1 inhibitors. ITA-5/ITA-9 effectively limited excess IFN-I-mediated hyperinflammation. These findings provide a promising therapeutic strategy for treating diseases mediated by aberrant TBK1 activation.
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