UCP2-induced fatty acid synthase promotes NLRP3 inflammasome activation during sepsis

炎症体 蓝蛋白 促炎细胞因子 ATP合酶 脂质代谢 脂肪酸合成 半胱氨酸蛋白酶1 下调和上调 脂肪酸合酶 化学 基因敲除 生物 脂质A 生物化学 细胞生物学 脂肪酸 细胞凋亡 脂多糖 炎症 免疫学 基因
作者
Jong‐Seok Moon,Seonmin Lee,Mi‐Ae Park,Ilias Ι. Siempos,Maria Haslip,Patty J. Lee,Mijin Yun,Chun K. Kim,Judie A. Howrylak,Stefan W. Ryter,Kiichi Nakahira,Augustine M.K. Choi
出处
期刊:Journal of Clinical Investigation [American Society for Clinical Investigation]
卷期号:133 (6) 被引量:4
标识
DOI:10.1172/jci169986
摘要

Cellular lipid metabolism has been linked to immune responses; however, the precise mechanisms by which de novo fatty acid synthesis can regulate inflammatory responses remain unclear. The NLRP3 inflammasome serves as a platform for caspase-1–dependent maturation and secretion of proinflammatory cytokines. Here, we demonstrated that the mitochondrial uncoupling protein-2 (UCP2) regulates NLRP3-mediated caspase-1 activation through the stimulation of lipid synthesis in macrophages. UCP2-deficient mice displayed improved survival in a mouse model of polymicrobial sepsis. Moreover, UCP2 expression was increased in human sepsis. Consistently, UCP2-deficient mice displayed impaired lipid synthesis and decreased production of IL-1β and IL-18 in response to LPS challenge. In macrophages, UCP2 deficiency suppressed NLRP3-mediated caspase-1 activation and NLRP3 expression associated with inhibition of lipid synthesis. In UCP2-deficient macrophages, inhibition of lipid synthesis resulted from the downregulation of fatty acid synthase (FASN), a key regulator of fatty acid synthesis. FASN inhibition by shRNA and treatment with the chemical inhibitors C75 and cerulenin suppressed NLRP3-mediated caspase-1 activation and inhibited NLRP3 and pro–IL-1β gene expression in macrophages. In conclusion, our results suggest that UCP2 regulates the NLRP3 inflammasome by inducing the lipid synthesis pathway in macrophages. These results identify UCP2 as a potential therapeutic target in inflammatory diseases such as sepsis.
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