| Literature DB >> 31332308 |
Wei Qin1,2, Ke Qin1,3, Yanling Zhang1,2, Wentong Jia4, Ying Chen1,3, Bo Cheng1,3, Linghang Peng1, Nan Chen1,3, Yuan Liu1,3, Wen Zhou1,3, Yan-Ling Wang4, Xing Chen5,6,7,8,9, Chu Wang10,11,12,13,14.
Abstract
Itaconate has been recently recognized as an anti-inflammatory metabolite involved in the pathogen-macrophage interface. Due to its weak electrophilicity, itaconate could modify cysteines of the protein KEAP1 and glutathione, which contribute to its anti-inflammatory effect. However, the substrates of itaconate modification in macrophages have not been systematically profiled, which largely impedes the understanding of its roles in immune responses. Here, we developed a specific thiol-reactive probe, 1-OH-Az, for quantitative chemoproteomic profiling of cysteine modifications by itaconate, and provided a global portrait of its proteome reactivity. We found that itaconate covalently modifies key glycolytic enzymes and impairs glycolytic flux mainly through inhibition of fructose-bisphosphate aldolase A (ALDOA). Moreover, itaconate attenuates the inflammatory response in stimulated macrophages by impairing the glycolysis. Our study provides a valuable resource of protein targets of itaconate in macrophages and establishes a negative-feedback link between glycolysis and itaconate, elucidating new functional insights for this anti-inflammatory metabolite.Entities:
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Year: 2019 PMID: 31332308 DOI: 10.1038/s41589-019-0323-5
Source DB: PubMed Journal: Nat Chem Biol ISSN: 1552-4450 Impact factor: 15.040