[No authors listed]
Prolactin (PRL), synthesized and secreted from lactotrophs of the anterior pituitary gland, is tonically inhibited by hypothalamic dopamine (DA) throughout the female reproductive (estrous) cycle. Our laboratory has shown that DA hyperpolarizes these cells by activating G protein-coupled inwardly rectifying K(+) (GIRK) channels; however, this response is only observed on proestrus. While the cellular mechanisms that allow for functional expression of this unique DA-signaling pathway are unclear, we hypothesized that activation of the DA-GIRK effector pathway is due to the rise in circulating estrogen (Eâ) during the preceding day of diestrus. Thus, we examined the effects of Eâ on primary lactotrophs isolated from female rats. Treatment with a physiological concentration of Eâ (40-80 pg/ml, in vivo or in vitro) induced a proestrous phenotype in diestrous lactotrophs. These cells exhibited a DA-induced membrane hyperpolarization, as well as a secretory rebound of PRL following DA withdrawal (characteristic of proestrous cells). Internal dialysis of GTPγS demonstrated that Eâ exposure enabled functional expression of GIRK channels, and this regulation by Eâ did not involve the DâR. The effect of Eâ was blocked by the receptor antagonist, ICI 182,780, and by the protein synthesis inhibitor, cycloheximide. Single-cell analysis revealed increased mRNA expression of GIRK channel subunits in Eâ-treated lactotrophs. While Eâ is known to have multiple actions on the lactotroph, the present findings illuminate a novel action of Eâ in lactotrophs-regulation of the expression of a DA effector, the GIRK channel.
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