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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.
Abstract:
We have shown previously that rat mammotropes produce an activity that suppresses PRL gene expression by neighboring mammotropes. Here, we tested the hypothesis that this mammotrope-derived inhibitor is transforming growth factor-beta1 (TGFbeta1). To this end, we pursued a two-pronged strategy wherein we added exogenous TGFbeta1 to primary cultures of anterior pituitary cells transfected with a rat PRL-luc construct. Measurement of luciferase activity by luminometry of extracts revealed that administration of TGFbeta1, over a range of doses shown by others to be secreted by cultures of pituitary cells, caused a significant (P < 0.05) suppression of PRL gene expression. In contrast, immunoremoval of secreted TGFbeta1 led to an elevation of PRL promoter-driven reporter activity in these cultures. In a subsequent study, we repeated these experiments with a single cell model in an attempt to determine the demographics of the cellular responses. Accordingly, we transfected (via microinjection) individual mammotropes with the rat PRL-luc construct; exposed them to TGFbeta1, its neutralizing antibody, or respective controls; and then assessed PRL gene expression in "real-time" by quantification of photons emitted by the living cells after exposure to the substrate luciferin. Our results revealed that 1) TGFbeta1 inhibited PRL gene expression in all mammotrope studied; 2) only a subgroup of mammotropes (approximately 23%) was relieved of TGFbeta1 inhibition by antibody treatment; and 3) the growth factor exerted its inhibitory effect via a paracrine, as opposed to an autocrine, mechanism. These findings identify TGFbeta1 as the paracrine agent that exerts a tonic inhibitory influence over PRL gene expression in mammotropes.
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.