Berberine promotes the recruitment and activation of brown adipose tissue in mice and humans

褐色脂肪组织 PRDM16 产热 内分泌学 内科学 安普克 脂肪生成 脂肪组织 脂肪生成 生物 细胞生物学 医学 磷酸化 蛋白激酶A
作者
Lingyan Wu,Mingfeng Xia,Yanan Duan,Lina Zhang,Haowen Jiang,Xiaobei Hu,Hongmei Yan,Yiqiu Zhang,Yushen Gu,Hongcheng Shi,Jia Li,Xin Gao,Jingya Li
出处
期刊:Cell Death and Disease [Springer Nature]
卷期号:10 (6) 被引量:100
标识
DOI:10.1038/s41419-019-1706-y
摘要

Brown adipose tissue (BAT) dissipates metabolic energy and mediates non-shivering thermogenesis, thereby boosting energy expenditure. Increasing BAT mass and activity is expected to be a promising strategy for combating obesity; however, few medications effectively and safely recruit and activate BAT in humans. Berberine (BBR), a natural compound, is commonly used as a nonprescription drug to treat diarrhea. Here, we reported that 1-month BBR intervention increased BAT mass and activity, reduced body weight, and improved insulin sensitivity in mildly overweight patients with non-alcoholic fatty liver disease. Chronic BBR treatment promoted BAT development by stimulating the expression of brown adipogenic genes, enhanced BAT thermogenesis, and global energy expenditure in diet-induced obese mice and chow-fed lean mice, Consistently, BBR facilitated brown adipocyte differentiation in both mouse and human primary brown preadipocytes. We further found that BBR increased the transcription of PRDM16, a master regulator of brown/beige adipogenesis, by inducing the active DNA demethylation of PRDM16 promoter, which might be driven by the activation of AMPK and production of its downstream tricarboxylic acid cycle intermediate α-Ketoglutarate. Moreover, chronic BBR administration had no impact on the BAT thermogenesis in adipose-specific AMPKa1 and AMPKa2 knockout mice. In summary, we found that BBR intervention promoted recruitment and activation of BAT and AMPK-PRDM16 axis was indispensable for the pro-BAT and pro-energy expenditure properties of BBR. Our findings suggest that BBR may be a promising drug for obesity and related metabolic disorders in humans partially through activating BAT.
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