University of Bordeaux, INSERM, Neurocentre Magendie, U1215, F-3300 Bordeaux, France.
University of Bordeaux, INSERM, Neurocentre Magendie, U1215, F-3300 Bordeaux, France; Laboratory of Neuronutrition and Metabolic Disorders, Instituto Tecnológico Superior de Tacámbaro, 61650 Tacámbaro, Michoacán, Mexico; Pós-Graduação em Neuropsiquiatria e Ciências do Comportamento, Universidade Federal de Pernambuco, 50732-970 Recife, Pernambuco, Brazil.
Cell Metab. 2021 Jul 6;33(7):1483-1492.e10. doi: 10.1016/j.cmet.2021.04.009. Epub 2021 Apr 21.
Bile acids (BAs) improve metabolism and exert anti-obesity effects through the activation of the Takeda G protein-coupled receptor 5 (TGR5) in peripheral tissues. TGR5 is also found in the brain hypothalamus, but whether hypothalamic BA signaling is implicated in body weight control and obesity pathophysiology remains unknown. Here we show that hypothalamic BA content is reduced in diet-induced obese mice. Central administration of BAs or a specific TGR5 agonist in these animals decreases body weight and fat mass by activating the sympathetic nervous system, thereby promoting negative energy balance. Conversely, genetic downregulation of hypothalamic TGR5 expression in the mediobasal hypothalamus favors the development of obesity and worsens established obesity by blunting sympathetic activity. Lastly, hypothalamic TGR5 signaling is required for the anti-obesity action of dietary BA supplementation. Together, these findings identify hypothalamic TGR5 signaling as a key mediator of a top-down neural mechanism that counteracts diet-induced obesity.
胆汁酸(BAs)通过外周组织中 Takeda G 蛋白偶联受体 5(TGR5)的激活来改善代谢并发挥抗肥胖作用。TGR5 也存在于大脑下丘脑,但下丘脑 BA 信号是否参与体重控制和肥胖发病机制尚不清楚。在这里,我们发现饮食诱导肥胖的小鼠下丘脑 BA 含量降低。在这些动物中,通过激活交感神经系统,中枢给予 BAs 或特定的 TGR5 激动剂可降低体重和脂肪量,从而促进负能量平衡。相反,在下丘脑中间基底部下调 TGR5 表达会削弱交感神经活动,有利于肥胖的发展,并使已建立的肥胖恶化。最后,下丘脑 TGR5 信号对于膳食 BA 补充的抗肥胖作用是必需的。总之,这些发现确定了下丘脑 TGR5 信号作为一种关键的中介物,用于对抗饮食诱导肥胖的自上而下的神经机制。
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