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An adenosine 3'5'-monophosphate-responsive deoxyribonucleic acid element confers forskolin sensitivity on gene

R C Kurten1, J S Richards

  • 1Department of Cell Biology, Baylor College of Medicine, Houston, Texas 77030.

Endocrinology
|September 1, 1989
PubMed

Insights

This study reveals how cyclic adenosine monophosphate (cAMP) influences granulosa cell function by regulating gene expression. Forskolin (FSK) activates cAMP production, leading to increased RII beta and P450scc mRNA, ultimately boosting progesterone synthesis.

Area of Science:

  • Reproductive Biology
  • Molecular Endocrinology
  • Cellular Signaling

Background:

  • Granulosa cells are crucial for ovarian function and steroidogenesis.
  • Cyclic adenosine monophosphate (cAMP) is a key second messenger regulating cellular processes.
  • Understanding cAMP's role in granulosa cells is vital for reproductive health.

Purpose of the Study:

  • To elucidate the molecular mechanisms by which cAMP affects granulosa cell function.
  • To investigate the role of cAMP-responsive elements (CREs) in regulating gene expression in granulosa cells.
  • To characterize the induction of cholesterol side-chain cleavage cytochrome P450 (P450scc) and cAMP-dependent protein kinase subunit RII beta.

Main Methods:

  • Granulosa cells were isolated from small antral follicles and cultured.
  • Forskolin (FSK) was used to stimulate cAMP production.
  • Messenger RNA (mRNA) levels for P450scc and RII beta were quantified.
  • A chloramphenicol acetyltransferase (CAT) reporter gene assay was employed to assess transcriptional activation via CREs.
  • Protein synthesis inhibition was performed using cycloheximide.

Main Results:

  • FSK stimulated cAMP production, leading to increased RII beta and P450scc mRNA accumulation and progesterone biosynthesis.
  • FSK treatment reversibly stimulated CAT gene expression in granulosa cells via a CRE-dependent mechanism.
  • Interstitial ovarian cells showed a delayed and FSK-insensitive response.
  • A CRE-deficient template failed to induce CAT gene expression, confirming the role of CREs.
  • Acute transcriptional activation by cAMP in granulosa cells suggested the presence or rapid synthesis of transcription-activating proteins.

Conclusions:

  • cAMP acutely regulates gene transcription in granulosa cells through cAMP-responsive elements (CREs).
  • The findings highlight the importance of CRE-mediated signaling in P450scc and RII beta gene expression.
  • Granulosa cells possess the necessary machinery for rapid cAMP-induced transcriptional responses, crucial for ovarian function.

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