Department of Nutritional Sciences, University of Oklahoma Health Sciences Center, Oklahoma City, United States.
Oklahoma Center for Geroscience, University of Oklahoma Health Sciences Center, Oklahoma City, United States.
Elife. 2020 Dec 8;9:e59616. doi: 10.7554/eLife.59616.
Metabolic dysfunction underlies several chronic diseases, many of which are exacerbated by obesity. Dietary interventions can reverse metabolic declines and slow aging, although compliance issues remain paramount. 17α-estradiol treatment improves metabolic parameters and slows aging in male mice. The mechanisms by which 17α-estradiol elicits these benefits remain unresolved. Herein, we show that 17α-estradiol elicits similar genomic binding and transcriptional activation through estrogen receptor α (ERα) to that of 17β-estradiol. In addition, we show that the ablation of ERα completely attenuates the beneficial metabolic effects of 17α-E2 in male mice. Our findings suggest that 17α-E2 may act through the liver and hypothalamus to improve metabolic parameters in male mice. Lastly, we also determined that 17α-E2 improves metabolic parameters in male rats, thereby proving that the beneficial effects of 17α-E2 are not limited to mice. Collectively, these studies suggest ERα may be a drug target for mitigating chronic diseases in male mammals.
代谢功能障碍是多种慢性疾病的基础,其中许多疾病会因肥胖而加重。饮食干预可以逆转代谢下降和延缓衰老,尽管依从性问题仍然至关重要。17α-雌二醇治疗可改善雄性小鼠的代谢参数并减缓衰老。17α-雌二醇产生这些益处的机制仍未解决。在此,我们表明 17α-雌二醇通过雌激素受体 α(ERα)引发类似于 17β-雌二醇的类似基因组结合和转录激活。此外,我们还表明 ERα 的缺失完全减弱了 17α-E2 对雄性小鼠有益的代谢作用。我们的研究结果表明,17α-E2 可能通过肝脏和下丘脑作用来改善雄性小鼠的代谢参数。最后,我们还确定 17α-E2 可改善雄性大鼠的代谢参数,从而证明 17α-E2 的有益作用不仅限于小鼠。总之,这些研究表明 ERα 可能是一种药物靶点,可用于缓解雄性哺乳动物的慢性疾病。