Activin E-ACVR1C cross talk controls energy storage via suppression of adipose lipolysis in mice

激活素 E-ACVR1C 串扰通过抑制小鼠脂肪分解来控制能量储存

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作者:Rene C Adam, Dwaine S Pryce, Joseph S Lee, Yuanqi Zhao, Ivory J Mintah, Soo Min, Gabor Halasz, Jason Mastaitis, Gurinder S Atwal, Senem Aykul, Vincent Idone, Aris N Economides, Luca A Lotta, Andrew J Murphy, George D Yancopoulos, Mark W Sleeman, Viktoria Gusarova

Abstract

Body fat distribution is a heritable risk factor for cardiovascular and metabolic disease. In humans, rare Inhibin beta E (INHBE, activin E) loss-of-function variants are associated with a lower waist-to-hip ratio and protection from type 2 diabetes. Hepatic fatty acid sensing promotes INHBE expression during fasting and in obese individuals, yet it is unclear how the hepatokine activin E governs body shape and energy metabolism. Here, we uncover activin E as a regulator of adipose energy storage. By suppressing β-agonist-induced lipolysis, activin E promotes fat accumulation and adipocyte hypertrophy and contributes to adipose dysfunction in mice. Mechanistically, we demonstrate that activin E elicits its effect on adipose tissue through ACVR1C, activating SMAD2/3 signaling and suppressing PPARG target genes. Conversely, loss of activin E or ACVR1C in mice increases fat utilization, lowers adiposity, and drives PPARG-regulated gene signatures indicative of healthy adipose function. Our studies identify activin E-ACVR1C as a metabolic rheostat promoting liver-adipose cross talk to restrain excessive fat breakdown and preserve fat mass during prolonged fasting, a mechanism that is maladaptive in obese individuals.

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