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Gα12/13 deficiency attenuates obesity-associated adipose tissue inflammation and promotes energy expenditure

Yeonho Son, Seokyoung Hwang, Honghyun Jo, J S Lee, Chaehui Yoon, Seunghyeon Shin, Yejin Moon, Cheoljun Choi, Ja Hyun Koo, Je Kyung Seong, Sik Namgoong, Zachary Gerhart‐Hines, Minsoo Noh, Sang Geon Kim, Yun‐Hee Lee

Revista con revisión por paresUso en el mundo real

En palabras de los autores

G protein–coupled receptor signaling via Gα12/13 regulates diverse physiological processes, but its role in adipose tissue metabolism remains largely unknown. Here, we identify Gα12/13 as inhibitory modulators of β-adrenergic Gαs signaling in adipocytes. Obesity is associated with increased Gα12/13 expression in adipose tissue of mice and humans. Using adipocyte-specific Gα13 knockout, global Gα12 knockout, and double knockout mice lacking both adipocyte-specific Gα13 and global Gα12, we demonstrate that loss of Gα12/13 protects against HFD-induced metabolic dysfunction. Deletion of either Gα12 or Gα13 attenuates Rho/ROCK–JNK–mediated inflammatory signaling, suppresses pyroptosis, promotes anti-inflammatory polarization of macrophages and improves insulin sensitivity. Combined deletion of both Gα12 and Gα13 retains these anti-inflammatory effects while further reducing T lymphocyte infiltration and enhancing β-adrenergic Gαs–cAMP–PKA signaling, mitochondrial biogenesis, thermogenic gene expression, and whole-body energy expenditure in HFD-fed mice. Collectively, our findings establish Gα12/13 as brakes on β-adrenergic Gαs signaling and key mediators of HFD-induced adipose tissue inflammation. Targeting the Gα12/13 pathway may therefore potentiate beneficial adipose remodeling and represent a promising therapeutic avenue for obesity-associated metabolic disease. Obesity impairs adipose function and drives metabolic disease. Here, the authors show that obesity-induced Gα12/13 restrains β-adrenergic signaling; its loss raises energy expenditure and protects mice from diet-induced metabolic dysfunction.

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Apareció: viernes, 25 de septiembre. Nature Communications. Revista con revisión por pares.

DOI: 10.1038/s41467-026-77961-8