信号
内分泌学
生物
内科学
神经科学
医学
细胞生物学
心理学
作者
William C. Krause,Rubén Rodríguez,Bruno Gegenhuber,Navneet Matharu,Andreas N. Rodriguez,Adriana M. Padilla-Roger,Kenichi Toma,Candice B. Herber,Stephanie M. Correa,Xin Duan,Nadav Ahituv,Jessica Tollkühn,Holly A. Ingraham
出处
期刊:Nature
[Springer Nature]
日期:2021-10-13
卷期号:599 (7883): 131-135
被引量:79
标识
DOI:10.1038/s41586-021-04010-3
摘要
Oestrogen depletion in rodents and humans leads to inactivity, fat accumulation and diabetes1,2, underscoring the conserved metabolic benefits of oestrogen that inevitably decrease with age. In rodents, the preovulatory surge in 17β-oestradiol (E2) temporarily increases energy expenditure to coordinate increased physical activity with peak sexual receptivity. Here we report that a subset of oestrogen-sensitive neurons in the ventrolateral ventromedial hypothalamic nucleus (VMHvl)3–7 projects to arousal centres in the hippocampus and hindbrain, and enables oestrogen to rebalance energy allocation in female mice. Surges in E2 increase melanocortin-4 receptor (MC4R) signalling in these VMHvl neurons by directly recruiting oestrogen receptor-α (ERα) to the Mc4r gene. Sedentary behaviour and obesity in oestrogen-depleted female mice were reversed after chemogenetic stimulation of VMHvl neurons expressing both MC4R and ERα. Similarly, a long-term increase in physical activity is observed after CRISPR-mediated activation of this node. These data extend the effect of MC4R signalling — the most common cause of monogenic human obesity8 — beyond the regulation of food intake and rationalize reported sex differences in melanocortin signalling, including greater disease severity of MC4R insufficiency in women9. This hormone-dependent node illuminates the power of oestrogen during the reproductive cycle in motivating behaviour and maintaining an active lifestyle in women. A subset of oestrogen-sensitive neurons integrate melanocortin and oestrogen signalling to rebalance energy allocation in female mice leading to reduced sedentary behaviour and decreasing obesity in oestrogen-depleted female mice
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