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Transforming growth factor beta1 is a paracrine inhibitor of prolactin gene expression

E J Abraham1, W J Faught, L S Frawley

  • 1Department of Cell Biology and Anatomy, Medical University of South Carolina, Charleston 29425, USA.

Endocrinology
|December 1, 1998
PubMed

Insights

Transforming growth factor-beta1 (TGFbeta1) suppresses prolactin (PRL) gene expression in rat mammotropes. This growth factor acts paracrine, inhibiting PRL production in neighboring cells, not through autocrine signaling.

Area of Science:

  • Endocrinology
  • Cell Biology
  • Molecular Biology

Background:

  • Rat mammotropes secrete an inhibitor affecting neighboring mammotrope PRL gene expression.
  • The identity of this mammotrope-derived inhibitor was previously unknown.

Purpose of the Study:

  • To test the hypothesis that transforming growth factor-beta1 (TGFbeta1) is the mammotrope-derived inhibitor of PRL gene expression.
  • To elucidate the mechanism and cellular response to TGFbeta1 in mammotropes.

Main Methods:

  • Primary anterior pituitary cell cultures transfected with a rat PRL-luc construct were treated with exogenous TGFbeta1.
  • Immunoremoval of secreted TGFbeta1 was performed.
  • Single mammotropes were microinjected with the PRL-luc construct and exposed to TGFbeta1 or its neutralizing antibody, with real-time PRL gene expression assessed via luminescence.

Main Results:

  • Exogenous TGFbeta1 significantly suppressed PRL gene expression in a dose-dependent manner.
  • Immunoremoval of TGFbeta1 increased PRL promoter-driven reporter activity.
  • TGFbeta1 inhibited PRL gene expression in all studied mammotropes, with antibody treatment relieving inhibition in approximately 23%.
  • The inhibitory effect was confirmed to be paracrine, not autocrine.

Conclusions:

  • Transforming growth factor-beta1 (TGFbeta1) is identified as the paracrine agent suppressing PRL gene expression in rat mammotropes.
  • TGFbeta1 exerts a tonic inhibitory influence on PRL gene expression via a paracrine mechanism.
  • These findings clarify the regulation of prolactin secretion at the cellular level.

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