| Literature DB >> 26563310 |
Soumyadeep Dey1, Xiaoxia Li1, Ruifeng Teng1, Mawadda Alnaeeli1, ZhiYong Chen1, Heather Rogers1, Constance Tom Noguchi1.
Abstract
The arcuate nucleus of the hypothalamus is essential for metabolic homeostasis and responds to leptin by producing several neuropeptides including proopiomelanocortin (POMC). We previously reported that high-dose erythropoietin (Epo) treatment in mice while increasing hematocrit reduced body weight, fat mass, and food intake and increased energy expenditure. Moreover, we showed that mice with Epo receptor (EpoR) restricted to erythroid cells (ΔEpoRE) became obese and exhibited decreased energy expenditure. Epo/EpoR signaling was found to promote hypothalamus POMC expression independently from leptin. Herein we used WT and ΔEpoRE mice and hypothalamus-derived neural culture system to study the signaling pathways activated by Epo in POMC neurons. We show that Epo stimulation activated STAT3 signaling and upregulated POMC expression in WT neural cultures. ΔEpoRE mice hypothalamus showed reduced POMC levels and lower STAT3 phosphorylation, with and without leptin treatment, compared to in vivo and ex vivo WT controls. Collectively, these data show that Epo regulates hypothalamus POMC expression via STAT3 activation, and provide a previously unrecognized link between Epo and leptin response.Entities:
Keywords: POMC; erythropoietin; gene expression; hypothalamus and neuroendocrinology
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Year: 2015 PMID: 26563310 PMCID: PMC4692057 DOI: 10.1530/JME-15-0171
Source DB: PubMed Journal: J Mol Endocrinol ISSN: 0952-5041 Impact factor: 5.098