AI Article Synopsis

  • The study investigates how metabolic signals from the hindbrain affect the gonadotropin-releasing hormone (GnRH) and luteinizing hormone (LH) surge, which is essential for female reproduction.
  • It shows that hypoglycemia restrains LH release through the hindbrain's A2 noradrenergic neurons, and this effect can be reversed by infusing lactate.
  • The research indicates that while lactate counteracts hypoglycemic effects on certain neuropeptide expressions, it does not influence AMPK activity in GnRH neurons, suggesting AMPK does not play a role in regulating this metabolic inhibition of LH secretion.

Article Abstract

Steroid positive-feedback activation of the gonadotropin-releasing hormone (GnRH)-pituitary luteinizing hormone (LH) neuroendocrine axis propagates the pre ovulatory LH surge, a crucial component of female reproduction. Our work shows that this key event is restrained by inhibitory metabolic input from hindbrain A2 noradrenergic neurons. GnRH neurons express the ultra-sensitive energy sensor adenosine 5'-monophosphate-activated protein kinase (AMPK); here, we investigated the hypothesis that GnRH nerve cell AMPK and peptide neurotransmitter responses to insulin-induced hypoglycemia are controlled by hindbrain lack of the oxidizable glycolytic end-product L-lactate. Data show that hypoglycemic inhibition of LH release in steroid-primed ovariectomized female rats was reversed by coincident caudal hindbrain lactate infusion. Western blot analyses of laser-microdissected A2 neurons demonstrate hypoglycemic augmentation [Fos, estrogen receptor-beta (ER-β), phosphoAMPK (pAMPK)] and inhibition (dopamine-beta-hydroxylase, GLUT3, MCT2) of protein expression in these cells, responses that were normalized by insulin plus lactate treatment. Hypoglycemia diminished rostral preoptic GnRH nerve cell GnRH-I protein and pAMPK content; the former, but not the latter response was reversed by lactate. Results implicate caudal hindbrain lactoprivic signaling in hypoglycemia-induced suppression of the LH surge, demonstrating that lactate repletion of that site reverses decrements in A2 catecholamine biosynthetic enzyme and GnRH neuropeptide precursor protein expression. Lack of effect of lactate on hypoglycemic patterns of GnRH AMPK activity suggests that this sensor is uninvolved in metabolic-inhibition of positive-feedback-stimulated hypophysiotropic signaling to pituitary gonadotropes.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC4441873PMC
http://dx.doi.org/10.1016/j.neuroscience.2015.04.049DOI Listing

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