Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
8477194 | Molecular and Cellular Endocrinology | 2014 | 9 Pages |
Abstract
Our objective was to investigate the mechanisms by which the endogenous CRHR2 in white adipose tissue (WAT) regulates metabolic activities associated with lipogenesis and lipolysis under continuous exposure to hypoxia. We found that hypobaric hypoxia at a simulated altitude of 5000Â m significantly reduced the body weight, food intake, and WAT mass of rats. Hypoxia also accelerated lipolysis and suppressed lipogenesis in WAT. Pretreatment with astressin 2B, a selective CRHR2 antagonist, partly but significantly attenuated the hypoxia-induced reductions in body weight and WAT mass by blocking the cAMP-protein kinase A (PKA)-hormone-sensitive lipase (HSL)/perilipin signalling pathway. Astressin 2B treatment failed to attenuate hypoxia induced lipogenic inhibition. In conclusion, activation of endogenous WAT Ucn2/3 autocrine/paracrine pathway was involved in hypoxia induced lipolysis via CRHR2 - cAMP-PKA signalling pathway. This study provides the novel understanding of local CRHR2 signaling pathway playing important role in WAT loss and lipid metabolism under hypoxia.
Keywords
SREBP-1cPhosphodiesterase 3BCRHR2Stearoyl coA desaturaseUCN3UCN2acetyl CoA carboxylase 1SCD-1UCP-1acyl-CoA oxidaseHSLACC1PPAR-αCPT-1PDE3BpKaPPAR-γFASBATFFAACOAtglFree fatty acidfatty acid synthaseUrocortin 2Urocortin 3White adipose tissuebrown adipose tissuetriglycerideUncoupling protein-1adipose triglyceride lipasehormone sensitive lipaseLipolysisHypoxiaperoxisome proliferator-activated receptor-αsterol regulatory element-binding protein 1cprotein kinase AperiperilipinWATcarnitine palmitoyltransferase-1Peroxisome proliferator-activated receptor-γ
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Authors
Yanlei Xiong, Zhuan Qu, Nan Chen, Hui Gong, Mintao Song, Xuequn Chen, Jizeng Du, Chengli Xu,