Department of Pathology and Pathophysiology and Department of Cardiology of the Second Affiliated Hospital, Zhejiang University School of Medicine, Hangzhou, China.
Department of Endocrinology, Children's Hospital, Zhejiang University School of Medicine, Hangzhou, China.
Nat Commun. 2023 Jul 19;14(1):4257. doi: 10.1038/s41467-023-39710-z.
Skeletal muscle and thermogenic adipose tissue are both critical for the maintenance of body temperature in mammals. However, whether these two tissues are interconnected to modulate thermogenesis and metabolic homeostasis in response to thermal stress remains inconclusive. Here, we report that human and mouse obesity is associated with elevated Musclin levels in both muscle and circulation. Intriguingly, muscle expression of Musclin is markedly increased or decreased when the male mice are housed in thermoneutral or chronic cool conditions, respectively. Beige fat is then identified as the primary site of Musclin action. Muscle-transgenic or AAV-mediated overexpression of Musclin attenuates beige fat thermogenesis, thereby exacerbating diet-induced obesity and metabolic disorders in male mice. Conversely, Musclin inactivation by muscle-specific ablation or neutralizing antibody treatment promotes beige fat thermogenesis and improves metabolic homeostasis in male mice. Mechanistically, Musclin binds to transferrin receptor 1 (Tfr1) and antagonizes Tfr1-mediated cAMP/PKA-dependent thermogenic induction in beige adipocytes. This work defines the temperature-sensitive myokine Musclin as a negative regulator of adipose thermogenesis that exacerbates the deterioration of metabolic health in obese male mice and thus provides a framework for the therapeutic targeting of this endocrine pathway.
骨骼肌和产热脂肪组织对于哺乳动物体温的维持都是至关重要的。然而,这两种组织是否相互关联,以调节产热和代谢稳态以应对热应激,目前仍不确定。在这里,我们报告人类和肥胖小鼠的肌肉和循环中肌联蛋白水平升高与肥胖有关。有趣的是,当雄性小鼠分别处于热中性或慢性凉爽条件下时,肌肉中的肌联蛋白表达明显增加或减少。米色脂肪被确定为肌联蛋白作用的主要部位。肌肉转基因或 AAV 介导的肌联蛋白过表达会减弱米色脂肪的产热作用,从而加剧雄性小鼠的饮食诱导肥胖和代谢紊乱。相反,肌肉特异性消融或中和抗体处理可使肌联蛋白失活,促进米色脂肪产热,并改善雄性小鼠的代谢稳态。在机制上,肌联蛋白与转铁蛋白受体 1(Tfr1)结合,并拮抗 Tfr1 介导的 cAMP/PKA 依赖性米色脂肪产热诱导。这项工作定义了温度敏感的肌因子肌联蛋白作为脂肪产热的负调节剂,它会加剧肥胖雄性小鼠代谢健康的恶化,从而为靶向该内分泌途径的治疗提供了一个框架。