Kinin B1 receptor deficiency promotes enhanced adipose tissue thermogenic response to β3-adrenergic stimulation

被引:0
|
作者
Branquinho, Jessica [1 ]
Neves, Raquel L. [1 ]
Martin, Renan P. [1 ,2 ]
Arata, Julia G. [1 ]
Bittencourt, Clarissa A. [1 ]
Araujo, Ronaldo C. [3 ]
Icimoto, Marcelo Y. [3 ]
Pesquero, Joao B. [1 ]
机构
[1] Univ Fed Sao Paulo, Ctr Res & Mol Diagnost Genet Dis, Dept Biophys, Sao Paulo, SP, Brazil
[2] Johns Hopkins Univ, Sch Med, McKusick Nathans Dept Genet Med, Baltimore, MD USA
[3] Univ Fed Sao Paulo, Dept Biophys, Sao Paulo, SP, Brazil
基金
巴西圣保罗研究基金会;
关键词
Adipose tissue; Thermogenesis; Adipocyte; Kinins; Metabolic diseases; Metabolism; BROWN-ADIPOCYTES; WHITE; BEIGE; ACTIVATION; MOUSE; CELL;
D O I
10.1007/s00011-024-01917-1
中图分类号
Q2 [细胞生物学];
学科分类号
071009 ; 090102 ;
摘要
Objective and design Kinin B1 receptor (B1R) has a key role in adipocytes to protect against obesity and glycemic metabolism, thus becoming a potential target for regulation of energy metabolism and adipose tissue thermogenesis. Material or subjects Kinin B1 knockout mice (B1KO) were subjected to acute induction with CL 316,243 and chronic cold exposure. Methods Metabolic and histological analyses, gene and protein expression and RNA-seq were performed on interscapular brown adipose tissue (iBAT) and inguinal white adipose tissue (iWAT) of mice. Results B1KO mice, under acute effect of CL 316,243, exhibited increased energy expenditure and upregulated thermogenic genes in iWAT. They were also protected from chronic cold, showing enhanced non-shivering thermogenesis with increased iBAT mass (similar to 90%) and recruitment of beige adipocytes in iWAT (similar to 50%). Positive modulation of thermogenic and electron transport chain genes, reaching a 14.5-fold increase for Ucp1 in iWAT. RNA-seq revealed activation of the insulin signaling pathways for iBAT and oxidative phosphorylation, tricarboxylic acid cycle, and browning pathways for iWAT. Conclusion B1R deficiency induced metabolic and gene expression alterations in adipose tissue, activating thermogenic pathways and increasing energy metabolism. B1R antagonists emerge as promising therapeutic targets for regulating obesity and associated metabolic disorders, such as inflammation and diabetes.
引用
收藏
页码:1565 / 1579
页数:15
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