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Influence of Adrenal Glands on the Modulation of Prolactin Gene Expression by the Endogenous Benzodiazepine Ligand Octadecaneuropeptide in the Male Rat Pituitary Gland
Authors:Hongbo Wang,Songyun Li,Laurent Givalois,&   Georges Pelletier
Affiliation:MRC Group in Molecular Endocrinology, CHUL Research Centre and Laval University, Québec, G1V 4G2, Canada.
Abstract:Recently, an 86-amino acid polypeptide with high affinity for diazepam binding sites, termed diazepam-binding inhibitor (DBI), has been found in the rat brain. DBI, as well as a peptide derived from DBI, the octadecaneuropeptide DBI[33–50] (ODN), interacts with the GABAA receptor complex. To investigate the role of these endogenous ligands for GABAA receptors on prolactin gene expression, we studied the effects of acute intracerebroventricular administration (4  h before sacrifice) of ODN on prolactin mRNA levels in the male rat. Because, in some neuropeptidergic systems, glucocorticoids play a role in the response to ODN, we also studied the influence of adrenal glands and the effect of dexamethasone administration in the response of prolactin gene expression to ODN. ODN injection produced an increase in prolactin mRNA levels. Adrenalectomy performed 5 days before sacrifice resulted in an increase in prolactin gene expression and also potentiated the stimulating effect of ODN. Because castration has been shown to decrease prolactin gene expression in the male rat, we used castrated and adrenalectomized animals to study the role of dexamethasone in the response of lactotrophs to ODN. In these steroid-deprived animals, dexamethasone treatment (for 4 days) decreased prolactin mRNA levels but did not modify the response to ODN. These data indicate that an endogenous neuropeptide interacting with the GABAA receptor complex can stimulate prolactin gene expression and suggest that the adrenal glands may produce factor(s) capable of decreasing prolactin mRNA. On the other hand, it does not appear that glucocorticoid hormones play a role in the effect of ODN on lactotroph activity.
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