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Primary Culture of Rat Adrenocortical Cells and Assays of Steroidogenic Functions
Published on: March 12, 2019
Transforming growth factor beta 1 is a negative regulator of steroid 17 alpha-hydroxylase expression in bovine
1Laboratoire BRCE, INSERM U-244, Centre d'Etudes Nucléaires, Grenoble, France.
Abstract:
Transforming growth factor beta 1 (TGF-beta 1) has been shown previously to induce striking alterations of bovine adrenocortical cell steroidogenic functions. One of the major lesions was characterized as a loss of steroid-17 alpha-hydroxylase activity, a key step in the biosynthetic pathway leading to active corticosteroid hormones. The mechanism of this negative effect of TGF-beta 1 on adrenocortical differentiated functions was investigated. It was observed that: 1) bovine adrenocortical 17 alpha-hydroxylase activity rapidly decreased in cells exposed to TGF-beta 1, in a time (10-20 h)-dependent manner; 2) immunoblotting of the corresponding cytochrome P-450(17) alpha showed that the loss of activity was superimposable to the decrease of the cellular protein content; 3) the cell content in 17 alpha-hydroxylase messenger RNA sharply dropped under TGF-beta 1 treatment (70-75% loss within 3-4 h) as determined by Northern blot analysis; 4) TGF-beta 1 inhibited as well the induction of P-450(17) alpha normally observed under adrenocorticotropin treatment; and 5) these TGF-beta 1 effects were selectively directed toward P-450(17) alpha expression, whereas another major steroidogenic cytochrome, i.e. P-450scc, was not affected. These observations showed that TGF-beta 1 is a potent negative modulator of 17 alpha-hydroxylase expression in bovine adrenocortical cells, very possibly at the transcriptional level. TGF-beta 1 (whose gene is expressed in these cells) may thus be examined as a possible autocrine inhibitory factor implied in the regulation of adrenocortical differentiated functions, in balance with ACTH, which represents the major positive signal in this system.
Insights
Transforming growth factor beta 1 (TGF-beta 1) significantly reduces 17 alpha-hydroxylase activity in bovine adrenocortical cells. This potent negative modulator likely acts at the transcriptional level, impacting corticosteroid hormone production.
Area of Science:
- Endocrinology
- Molecular Biology
- Cell Biology
Background:
- Transforming growth factor beta 1 (TGF-beta 1) alters bovine adrenocortical cell steroidogenesis.
- A key observed effect is the loss of steroid-17 alpha-hydroxylase activity, crucial for corticosteroid biosynthesis.
Purpose of the Study:
- To investigate the mechanism behind TGF-beta 1's negative effect on adrenocortical differentiated functions.
- To determine how TGF-beta 1 impacts steroid-17 alpha-hydroxylase activity and expression.
Main Methods:
- Time-dependent analysis of 17 alpha-hydroxylase activity in TGF-beta 1 treated cells.
- Immunoblotting to assess cytochrome P-450(17) alpha protein levels.
- Northern blot analysis to quantify 17 alpha-hydroxylase messenger RNA levels.
- Assessment of TGF-beta 1's effect on adrenocorticotropin-induced P-450(17) alpha induction.
Main Results:
- TGF-beta 1 treatment led to a rapid, time-dependent decrease in bovine adrenocortical 17 alpha-hydroxylase activity.
- Loss of activity correlated with reduced cellular protein content of cytochrome P-450(17) alpha.
- Significant reduction (70-75% within 3-4 h) in 17 alpha-hydroxylase messenger RNA levels was observed.
- TGF-beta 1 inhibited both basal and adrenocorticotropin-stimulated P-450(17) alpha expression, while P-450scc expression remained unaffected.
Conclusions:
- TGF-beta 1 acts as a potent negative modulator of 17 alpha-hydroxylase expression in bovine adrenocortical cells, likely at the transcriptional level.
- TGF-beta 1 may function as an autocrine inhibitory factor regulating adrenocortical differentiated functions.
- This inhibitory role of TGF-beta 1 is potentially balanced by the positive regulatory signal of ACTH.
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