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?-arrestin-1 suppresses myogenic reprogramming of brown fat to maintain euglycemia.


ABSTRACT: A better understanding of the signaling pathways regulating adipocyte function is required for the development of new classes of antidiabetic/obesity drugs. We here report that mice lacking ?-arrestin-1 (barr1), a cytoplasmic and nuclear signaling protein, selectively in adipocytes showed greatly impaired glucose tolerance and insulin sensitivity when consuming an obesogenic diet. In contrast, transgenic mice overexpressing barr1 in adipocytes were protected against the metabolic deficits caused by a high-calorie diet. Barr1 deficiency led to a myogenic reprogramming of brown adipose tissue (BAT), causing elevated plasma myostatin (Mstn) levels, which in turn led to impaired insulin signaling in multiple peripheral tissues. Additional in vivo studies indicated that barr1-mediated suppression of Mstn expression by BAT is required for maintaining euglycemia. These findings convincingly identify barr1 as a critical regulator of BAT function. Strategies aimed at enhancing barr1 activity in BAT may prove beneficial for the treatment of type 2 diabetes.

SUBMITTER: Pydi SP 

PROVIDER: S-EPMC7274797 | biostudies-literature | 2020 Jun

REPOSITORIES: biostudies-literature

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β-arrestin-1 suppresses myogenic reprogramming of brown fat to maintain euglycemia.

Pydi Sai P SP   Jain Shanu S   Barella Luiz F LF   Zhu Lu L   Sakamoto Wataru W   Meister Jaroslawna J   Wang Lei L   Lu Huiyan H   Cui Yinghong Y   Gavrilova Oksana O   Wess Jürgen J  

Science advances 20200605 23


A better understanding of the signaling pathways regulating adipocyte function is required for the development of new classes of antidiabetic/obesity drugs. We here report that mice lacking β-arrestin-1 (barr1), a cytoplasmic and nuclear signaling protein, selectively in adipocytes showed greatly impaired glucose tolerance and insulin sensitivity when consuming an obesogenic diet. In contrast, transgenic mice overexpressing barr1 in adipocytes were protected against the metabolic deficits caused  ...[more]

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