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IL-1R-IRAKM-Slc25a1 signaling axis reprograms lipogenesis in adipocytes to promote diet-induced obesity in mice

Medicine and Health

IL-1R-IRAKM-Slc25a1 signaling axis reprograms lipogenesis in adipocytes to promote diet-induced obesity in mice

W. Liu, H. Zhou, et al.

Discover groundbreaking research by Weiwei Liu and colleagues on the innovative IL-1R-IRAKM-Slc25a1 signaling axis in adipocytes, revealing its crucial role in combating diet-induced obesity and enhancing metabolic health. This study uncovers how targeting this axis could pave the way for new obesity therapies.... show more
Abstract
Toll-like receptors/Interleukin-1 receptor signaling plays an important role in high-fat diet-induced adipose tissue dysfunction contributing to obesity-associated metabolic syndromes. Here, we show an unconventional IL-1R-IRAKM-Slc25a1 signaling axis in adipocytes that reprograms lipogenesis to promote diet-induced obesity. Adipocyte-specific deficiency of IRAKM reduces high-fat diet-induced body weight gain, increases whole body energy expenditure and improves insulin resistance, associated with decreased lipid accumulation and adipocyte cell sizes. IL-1β stimulation induces the translocation of IRAKM Myddosome to mitochondria to promote de novo lipogenesis in adipocytes. Mechanistically, IRAKM interacts with and phosphorylates mitochondrial citrate carrier Slc25a1 to promote IL-1β-induced mitochondrial citrate transport to cytosol and de novo lipogenesis. Moreover, IRAKM-Slc25a1 axis mediates IL-1β induced Pgcla acetylation to regulate thermogenic gene expression in adipocytes. IRAKM kinase-inactivation also attenuates high-fat diet-induced obesity. Taken together, our study suggests that the IL-1R-IRAKM-Slc25a1 signaling axis tightly links inflammation and adipocyte metabolism, indicating a potential therapeutic target for obesity.
Publisher
NATURE COMMUNICATIONS
Published On
May 18, 2022
Authors
Weiwei Liu, Hao Zhou, Han Wang, Quanri Zhang, Renliang Zhang, Belinda Willard, Caini Liu, Zizhen Kang, Xiao Li, Xiaoxia Li
Tags
IL-1R
IRAKM
adipocytes
obesity
metabolism
insulin resistance
lipogenesis
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