Clenbuterol exerts antidiabetic activity through metabolic reprogramming of skeletal muscle cells

克伦特罗通过骨骼肌细胞的代谢重编程发挥抗糖尿病作用

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作者:Jaroslawna Meister #, Derek B J Bone #, Jonas R Knudsen, Luiz F Barella, Thomas J Velenosi, Dmitry Akhmedov, Regina J Lee, Amanda H Cohen, Oksana Gavrilova, Yinghong Cui, Gerard Karsenty, Min Chen, Lee S Weinstein, Maximilian Kleinert, Rebecca Berdeaux, Thomas E Jensen, Erik A Richter, Jürgen Wess

Abstract

Activation of the sympathetic nervous system causes pronounced metabolic changes that are mediated by multiple adrenergic receptor subtypes. Systemic treatment with β2-adrenergic receptor agonists results in multiple beneficial metabolic effects, including improved glucose homeostasis. To elucidate the underlying cellular and molecular mechanisms, we chronically treated wild-type mice and several newly developed mutant mouse strains with clenbuterol, a selective β2-adrenergic receptor agonist. Clenbuterol administration caused pronounced improvements in glucose homeostasis and prevented the metabolic deficits in mouse models of β-cell dysfunction and insulin resistance. Studies with skeletal muscle-specific mutant mice demonstrated that these metabolic improvements required activation of skeletal muscle β2-adrenergic receptors and the stimulatory G protein, Gs. Unbiased transcriptomic and metabolomic analyses showed that chronic β2-adrenergic receptor stimulation caused metabolic reprogramming of skeletal muscle characterized by enhanced glucose utilization. These findings strongly suggest that agents targeting skeletal muscle metabolism by modulating β2-adrenergic receptor-dependent signaling pathways may prove beneficial as antidiabetic drugs.

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