Publication:
Estradiol Regulates Energy Balance by Ameliorating Hypothalamic Ceramide-Induced ER Stress.

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Date

2018-09-11

Authors

Gonzalez-Garcia, Ismael
Contreras, Cristina
Estevez-Salguero, Anxela
Ruiz-Pino, Francisco
Colsh, Benoit
Pensado, Ivan
Liñares-Pose, Laura
Rial-Pensado, Eva
Martinez de Morentin, Pablo B
Fernø, Johan

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Cell Press
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Abstract

Compelling evidence has shown that, besides its putative effect on the regulation of the gonadal axis, estradiol (E2) exerts a dichotomic effect on the hypothalamus to regulate food intake and energy expenditure. The anorectic effect of E2 is mainly mediated by its action on the arcuate nucleus (ARC), whereas its effects on brown adipose tissue (BAT) thermogenesis occur in the ventromedial nucleus (VMH). Here, we demonstrate that central E2 decreases hypothalamic ceramide levels and endoplasmic reticulum (ER) stress. Pharmacological or genetic blockade of ceramide synthesis and amelioration of ER stress selectively occurring in the VMH recapitulate the effect of E2, leading to increased BAT thermogenesis, weight loss, and metabolic improvement. These findings demonstrate that E2 regulation of ceramide-induced hypothalamic lipotoxicity and ER stress is an important determinant of energy balance, suggesting that dysregulation of this mechanism may underlie some changes in energy homeostasis seen in females.

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MeSH Terms

Adipose tissue, brown
Animals
Ceramides
Endoplasmic reticulum stress
Energy metabolism
Estradiol
Estrogens
Female
Homeostasis
Hypothalamus
Rats
Thermogenesis

DeCS Terms

Ceramidas
Estradiol
Estrés del retículo endoplásmico
Estrógenos
Hipotálamo
Homeostasis
Metabolismo energético
Tejido adiposo pardo
Termogénesis

CIE Terms

Keywords

Brown adipose tissue, Ceramides, Endoplasmic reticulum stress, Estradiol, Hypothalamus, Thermogenesis

Citation

González-García I, Contreras C, Estévez-Salguero Á, Ruíz-Pino F, Colsh B, Pensado I, et al. Estradiol Regulates Energy Balance by Ameliorating Hypothalamic Ceramide-Induced ER Stress. Cell Rep. 2018 Oct 9;25(2):413-423.e5