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The interaction of fasting, caloric restriction, and diet-induced obesity with 17β-estradiol on the expression of KNDy neuropeptides and their receptors in the female mouse
Accepted manuscript   Open access   Peer reviewed

The interaction of fasting, caloric restriction, and diet-induced obesity with 17β-estradiol on the expression of KNDy neuropeptides and their receptors in the female mouse

Jennifer A. Yang, Ali Yasrebi, Marisa Snyder and Troy A. Roepke
Molecular and Cellular Endocrinology, Vol.437, pp.35-50
2016
DOI:
https://doi.org/10.7282/T3Z60RFS
PMCID: PMC5048571

Abstract

Caloric restriction Diet-induced obesity Arcuate nucleus KNDy neurons Ghrelin
Arcuate neurons that coexpress kisspeptin (Kiss1), neurokinin B (Tac2), and dynorphin (Pdyn) mediate negative feedback of 17β-estradiol (E2) on the HPG axis. Previous studies report that fasting and caloric restriction reduce arcuate Kiss1 expression. The objective of this study was to determine the interactions of E2 with fasting, caloric restriction, and diet-induced obesity on KNDy gene and receptor expression. Ovariectomized female mice were separated into control and estradiol benzoate (E2B)-treated groups. E2B decreased Kiss1 and the tachykinin 2 receptor, Tac3r, in ARC tissue and Tac2 in Tac2 neurons. Diet-induced obesity decreased Kiss1 in oil-treated animals and the kisspeptin receptor, Kiss1r and Tac3r in the ARC of E2B-treated animals. Chronic caloric (30%) restriction reduced all three neuropeptides in oil-treated females and Kiss1r by E2B in CR animals. Taken together, our experiments suggest that steroidal environment and energy state negatively regulate KNDy gene expression in both ARC and Tac2 neurons.
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Yang et al 2016 Mol Cell Endocrinol873.60 kBDownloadView
Accepted Manuscript (AM) Open Access
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http://dx.doi.org/10.1016/j.mce.2016.08.008View
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