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Publication : Estrogen receptor α controls metabolism in white and brown adipocytes by regulating <i>Polg1</i> and mitochondrial remodeling.

First Author  Zhou Z Year  2020
Journal  Sci Transl Med Volume  12
Issue  555 PubMed ID  32759275
Mgi Jnum  J:310476 Mgi Id  MGI:6762772
Doi  10.1126/scitranslmed.aax8096 Citation  Zhou Z, et al. (2020) Estrogen receptor alpha controls metabolism in white and brown adipocytes by regulating Polg1 and mitochondrial remodeling. Sci Transl Med 12(555)
abstractText  Obesity is heightened during aging, and although the estrogen receptor alpha (ERalpha) has been implicated in the prevention of obesity, its molecular actions in adipocytes remain inadequately understood. Here, we show that adipose tissue ESR1/Esr1 expression inversely associated with adiposity and positively associated with genes involved in mitochondrial metabolism and markers of metabolic health in 700 Finnish men and 100 strains of inbred mice from the UCLA Hybrid Mouse Diversity Panel. To determine the anti-obesity actions of ERalpha in fat, we selectively deleted Esr1 from white and brown adipocytes in mice. In white adipose tissue, Esr1 controlled oxidative metabolism by restraining the targeted elimination of mitochondria via the E3 ubiquitin ligase parkin. mtDNA content was elevated, and adipose tissue mass was reduced in adipose-selective parkin knockout mice. In brown fat centrally involved in body temperature maintenance, Esr1 was requisite for both mitochondrial remodeling by dynamin-related protein 1 (Drp1) and uncoupled respiration thermogenesis by uncoupled protein 1 (Ucp1). In both white and brown fat of female mice and adipocytes in culture, mitochondrial dysfunction in the context of Esr1 deletion was paralleled by a reduction in the expression of the mtDNA polymerase gamma subunit Polg1 We identified Polg1 as an ERalpha target gene by showing that ERalpha binds the Polg1 promoter to control its expression in 3T3L1 adipocytes. These findings support strategies leveraging ERalpha action on mitochondrial function in adipocytes to combat obesity and metabolic dysfunction.
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