Adipocyte β-arrestin-2 is essential for maintaining whole body glucose and energy homeostasis

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作者
Sai P. Pydi
Shanu Jain
Wesley Tung
Yinghong Cui
Lu Zhu
Wataru Sakamoto
Shalini Jain
Brent S. Abel
Monica C. Skarulis
Jie Liu
Thanh Huynh
Karel Pacak
Marc G. Caron
Oksana Gavrilova
Toren Finkel
Jürgen Wess
机构
[1] National Institute of Diabetes and Digestive and Kidney Diseases,Molecular Signaling Section, Laboratory of Bioorganic Chemistry
[2] National Institute of Diabetes and Digestive and Kidney Diseases,Mouse Metabolism Core
[3] National Institute of Diabetes and Digestive and Kidney Diseases,Diabetes, Endocrinology, and Obesity Branch
[4] National Heart,Center for Molecular Medicine
[5] Lung,Section on Medical Neuroendocrinology
[6] and Blood Institute,Department of Cell Biology
[7] Eunice Kennedy Shriver National Institute of Child Health and Human Development,undefined
[8] Duke University Medical Center,undefined
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Nature Communications | / 10卷
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摘要
β-Arrestins are major regulators of G protein-coupled receptor-mediated signaling processes. Their potential roles in regulating adipocyte function in vivo remain unexplored. Here we report the novel finding that mice lacking β-arrestin-2 (barr2) selectively in adipocytes show significantly reduced adiposity and striking metabolic improvements when consuming excess calories. We demonstrate that these beneficial metabolic effects are due to enhanced signaling through adipocyte β3-adrenergic receptors (β3-ARs), indicating that barr2 represents a potent negative regulator of adipocyte β3-AR activity in vivo. Interestingly, essentially all beneficial metabolic effects caused by adipocyte barr2 deficiency are absent in adipocyte barr2-PRDM16 double KO mice, indicating that the metabolic improvements caused by the lack of barr2 in adipocytes are mediated by the browning/beiging of white adipose tissue. Our data support the novel concept that ‘G protein-biased’ β3-AR agonists that do not promote β3-AR/barr2 interactions may prove useful for the treatment of obesity and related metabolic disorders.
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  • [1] Gonzalez-Muniesa P(2017)Obesity Nat. Rev. Dis. Prim. 3 17034-1517
  • [2] Cypess AM(2009)Identification and importance of brown adipose tissue in adult humans N. Engl. J. Med. 360 1509-634
  • [3] Lidell ME(2013)Evidence for two types of brown adipose tissue in humans Nat. Med. 19 631-44
  • [4] Rosen ED(2014)What we talk about when we talk about fat Cell 156 20-1508
  • [5] Spiegelman BM(2009)Cold-activated brown adipose tissue in healthy men N. Engl. J. Med. 360 1500-1525
  • [6] van Marken Lichtenbelt WD(2009)Functional brown adipose tissue in healthy adults N. Engl. J. Med. 360 1518-702
  • [7] Virtanen KA(2016)Control of brown and beige fat development Nat. Rev. Mol. Cell Biol. 17 691-376
  • [8] Wang W(2012)Beige adipocytes are a distinct type of thermogenic fat cell in mouse and human Cell 150 366-4288
  • [9] Seale P(2016)Adipocyte-specific deletion of Ip6k1 reduces diet-induced obesity by enhancing AMPK-mediated thermogenesis J. Clin. Invest 126 4273-1184
  • [10] Wu J(2016)Zfp423 maintains white adipocyte identity through suppression of the beige cell thermogenic gene program Cell Metab. 23 1167-2351