4.8 Article

Estrogen receptor-α in medial amygdala neurons regulates body weight

期刊

JOURNAL OF CLINICAL INVESTIGATION
卷 125, 期 7, 页码 2861-2876

出版社

AMER SOC CLINICAL INVESTIGATION INC
DOI: 10.1172/JCI80941

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资金

  1. NIH [R01DK093587, R01DK101379, R00DK085330, P01 DK088761, T32CA059268, NIHDK59820, DK5U19DK062434, R01DK092605, P30HD024064]
  2. Marcadia Biotech
  3. American Diabetes Association [1-11-BS-180, 7-13-JF-61]
  4. American Heart Association
  5. USDA ARS

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Estrogen receptor-alpha (ER alpha) activity in the brain prevents obesity in both males and females. However, the ER alpha-expressing neural populations that regulate body weight remain to be fully elucidated. Here we showed that single-minded-1 (SIM1) neurons in the medial amygdala (MeA) express abundant levels of ER alpha. Specific deletion of the gene encoding ER alpha (Esr1) from SIM1 neurons, which are mostly within the MeA, caused hypoactivity and obesity in both male and female mice fed with regular chow, increased susceptibility to diet-induced obesity (DIO) in males but not in females, and blunted the body weight-lowering effects of a glucagon-like peptide-1-estrogen (GLP-1-estrogen) conjugate. Furthermore, selective adeno-associated virus-mediated deletion of Esr1 in the MeA of adult male mice produced a rapid body weight gain that was associated with remarkable reductions in physical activity but did not alter food intake. Conversely, overexpression of ER alpha in the MeA markedly reduced the severity of DIO in male mice. Finally, an ER alpha agonist depolarized MeA SIM1 neurons and increased their firing rate, and designer receptors exclusively activated by designer drug-mediated (DREADD-mediated) activation of these neurons increased physical activity in mice. Collectively, our results support a model where ER alpha signals activate MeA neurons to stimulate physical activity, which in turn prevents body weight gain.

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