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Endocrinology Vol. 142, No. 9 3935-3940
Copyright © 2001 by The Endocrine Society


ARTICLES

Feedback Regulation of PRL Secretion Is Mediated by the Transcription Factor, Signal Transducer, and Activator of Transcription 5b

David R. Grattan, Junjie Xu, Michael J. McLachlan, Ilona C. Kokay, Stephen J. Bunn, Russell C. Hovey and Helen W. Davey

Department of Anatomy and Structural Biology, University of Otago (D.R.G., J.X., I.C.K., S.J.B.), Dunedin, New Zealand; AgResearch, Ruakura Research Center (M.J.M., H.W.D.), Hamilton, New Zealand; and Molecular and Cellular Endocrinology Section, Center for Cancer Research, National Cancer Institute, National Institutes of Health (R.C.H.), Bethesda, Maryland 20892

Address all correspondence and requests for reprints to: Dr. Dave Grattan, Department of Anatomy and Structural Biology, University of Otago, P.O. Box 913, Dunedin, New Zealand.

PRL secretion from the anterior pituitary gland is inhibited by dopamine produced in the tuberoinfundibular dopamine neurons of the hypothalamus. The activity of tuberoinfundibular dopamine neurons is stimulated by PRL; thus, PRL regulates its own secretion by a negative feedback mechanism. PRL receptors are expressed on tuberoinfundibular dopamine neurons, but the intracellular signaling pathway is not known. We have observed that mice with a disrupted signal transducer and activator of transcription 5b gene have grossly elevated serum PRL concentrations. Despite this hyperprolactinemia, mRNA levels and immunoreactivity of tyrosine hydroxylase, the key enzyme in dopamine synthesis, were significantly lower in the tuberoinfundibular dopamine neurons of these signal transducer and activator of transcription 5b-deficient mice. Concentrations of the dopamine metabolite dihydroxyphenylacetic acid in the median eminence were also significantly lower in signal transducer and activator of transcription 5b-deficient mice than in wild-type mice. No changes were observed in nonhypothalamic dopaminergic neuronal populations, indicating that the effects were selective to tuberoinfundibular dopamine neurons. These data indicate that in the absence of signal transducer and activator of transcription 5b, PRL signal transduction in tuberoinfundibular dopamine neurons is impaired, and they demonstrate that this transcription factor plays an obligatory and nonredundant role in mediating the negative feedback action of PRL on tuberoinfundibular dopamine neurons.




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