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Modulation of Mdm2 expression and p53-induced apoptosis in immortalized human ovarian granulosa cells

K Hosokawa1, D Aharoni, A Dantes

  • 1Department of Molecular Cell Biology, The Weizmann Institute of Science, Rehovot, Israel.

Endocrinology
|October 30, 1998
PubMed

Insights

The tumor suppressor p53 induces apoptosis in granulosa cells, but extracellular matrix and bFGF block this process by modulating Mdm2 expression. This interaction is crucial for understanding granulosa cell apoptosis.

Area of Science:

  • Molecular Biology
  • Cell Biology
  • Oncology

Background:

  • The tumor suppressor p53 gene regulates cell cycle arrest and apoptosis.
  • The mdm2 oncogene is activated by p53 and can inhibit p53's functions.
  • Understanding apoptosis modulation in granulosa cells is critical for reproductive health and cancer research.

Purpose of the Study:

  • To investigate the role of p53-downstream genes in apoptosis modulation in ras-transformed human granulosa cells.
  • To examine the effects of cAMP, bFGF, and extracellular matrix (ECM) on p53-induced apoptosis and Mdm2 expression.

Main Methods:

  • Established highly steroidogenic human granulosa cell lines expressing Ha-ras and a temperature-sensitive p53 mutant (p53val135).
  • Induced apoptosis by shifting cells to a permissive temperature (32°C) and modulated apoptosis using cAMP, bFGF, and ECM.
  • Assessed apoptosis, Mdm2 expression, steroidogenesis, and actin cytoskeleton organization.

Main Results:

  • Ras-transformed granulosa cells with functional p53val135 underwent apoptosis at 32°C, enhanced by cAMP.
  • Basic fibroblast growth factor (bFGF) and ECM inhibited p53/cAMP-induced apoptosis, with ECM enhancing steroidogenesis.
  • bFGF and ECM increased Mdm2 expression, preceding apoptosis, while cAMP suppressed it. ECM also promoted differentiation and actin cytoskeleton organization.

Conclusions:

  • bFGF and ECM components interact with p53/cAMP signaling pathways to regulate apoptosis in granulosa cells, partly through Mdm2 modulation.
  • The extracellular matrix plays a significant role in preventing apoptosis and promoting differentiation in these cells.
  • Actin cytoskeleton organization is important for the cross-talk between apoptotic and anti-apoptotic signaling pathways.

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