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Regulation of 3 beta-hydroxysteroid dehydrogenase expression in human adrenocortical H295R cells

I M Bird1, K Imaishi, M M Pasquarette

  • 1Cecil H and ida Green Center for Reproductive Biology Sciences, University of Texas Southwestern Medical Center, Dallas 75235, USA.

Insights

Angiotensin II (All) influences steroid production in human adrenocortical cells by modulating 3 beta-hydroxysteroid dehydrogenase (3 beta-HSD) and 17 alpha-hydroxylase cytochrome P450 (P450c17) expression. All

Area of Science:

  • Endocrinology and steroidogenesis research.
  • Molecular mechanisms of hormone regulation.
  • Adrenocortical cell function and signaling pathways.

Background:

  • Inconsistent findings exist regarding angiotensin II (All) effects on steroidogenic enzymes in human adrenocortical cells.
  • The role of protein kinase C in All-mediated responses requires further elucidation.
  • The H295R cell line offers a model to study these complex interactions.

Purpose of the Study:

  • To investigate the effects of All on 3 beta-hydroxysteroid dehydrogenase (3 beta-HSD) and 17 alpha-hydroxylase cytochrome P450 (P450c17) expression and steroid secretion.
  • To determine the involvement of protein kinase C in All-induced responses.
  • To analyze the impact of All on steroidogenesis in the H295R human adrenocortical cell line.

Main Methods:

  • Utilized the H295R human adrenocortical carcinoma cell line.
  • Administered All, 12-O-tetradecanoylphorbol 13-acetate (TPA), and forskolin treatments.
  • Measured steroid secretion (aldosterone, cortisol, dehydroepiandrosterone - DHEA).
  • Assessed mRNA expression and enzyme activity of 3 beta-HSD and P450c17.
  • Investigated signaling pathways including protein kinase C and Ca2+ pathways.
  • Used AT1 receptor antagonist DuP753 (Losartan) to confirm receptor involvement.

Main Results:

  • All alone increased aldosterone and cortisol secretion, upregulating P450c17 and 3 beta-HSD expression.
  • TPA mimicked All's effect on 3 beta-HSD but decreased P450c17, suggesting a non-PKC pathway for All's P450c17 effect.
  • Forskolin stimulated cortisol and DHEA secretion, increasing both 3 beta-HSD and P450c17 expression.
  • Co-treatment with All and forskolin attenuated steroid secretion and enzyme expression, reducing the 17 alpha-hydroxylase/3 beta-HSD activity ratio.
  • All's effect on forskolin-induced 3 beta-HSD activity was blocked by DuP753, confirming AT1 receptor involvement.

Conclusions:

  • All modulates steroidogenesis in H295R cells via AT1 receptor signaling, affecting both 3 beta-HSD and P450c17 expression.
  • The stimulatory effect of All on P450c17 expression is independent of protein kinase C.
  • All can attenuate forskolin-induced steroidogenesis, highlighting complex cross-talk in adrenocortical regulation.

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