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p53/p21(CIP1) cooperate in enforcing rapamycin-induced G(1) arrest and determine the cellular response to rapamycin

S Huang1, L N Liu, H Hosoi

  • 1Department of Molecular Pharmacology, St. Jude Children's Research Hospital, Memphis, Tennessee 38105-2794, USA.

Cancer Research
|April 20, 2001
PubMed

Insights

Rapamycin induces apoptosis in tumor cells by promoting cell cycle progression during mTOR inhibition. Restoring G(1) arrest with p53 or p21(CIP1) protects cells from this rapamycin-induced apoptosis.

Area of Science:

  • Cell Biology
  • Molecular Biology
  • Cancer Research

Background:

  • The G(1) cell cycle checkpoint is crucial for preventing DNA replication errors.
  • Rapamycin is an immunosuppressant drug that inhibits the mTOR pathway, affecting cell growth and proliferation.
  • Understanding the interplay between cell cycle regulation and drug-induced apoptosis is vital for cancer therapy.

Purpose of the Study:

  • To investigate the relationship between G(1) checkpoint function and rapamycin-induced apoptosis in cancer cells.
  • To determine the role of p53 and p21(CIP1) in mediating cellular responses to rapamycin.
  • To explore therapeutic strategies for preventing rapamycin-induced apoptosis.

Main Methods:

  • Utilized human rhabdomyosarcoma cell lines (Rh1, Rh30) with mutated p53 alleles.
  • Employed rapamycin treatment and monitored cell cycle progression (G(1) phase, BrdUrd incorporation).
  • Overexpressed p53 or p21(CIP1) using adenovirus vectors and assessed protection against apoptosis.
  • Examined responses in wild-type and p53/p21(CIP1)-deficient murine embryo fibroblasts (MEFs).

Main Results:

  • Rapamycin induced apoptosis in tumor cells, associated with continued G(1) to S phase progression.
  • Overexpression of p53 or p21(CIP1) restored G(1) arrest and conferred complete protection from rapamycin-induced apoptosis.
  • Rapamycin induced significant apoptosis in p53- or p21(CIP1)-deficient MEFs, unlike wild-type MEFs.
  • p53 facilitates G(1) arrest, leading to a cytostatic response to rapamycin, while its deficiency promotes cell cycle progression and apoptosis.

Conclusions:

  • Rapamycin-induced apoptosis in tumor cells is linked to ongoing G(1) progression under mTOR inhibition.
  • Arresting cells in G(1) phase via p53 or p21(CIP1) overexpression protects against rapamycin-induced apoptosis.
  • p53 plays a critical role in enforcing G(1) arrest, dictating a cytostatic rather than apoptotic outcome in response to rapamycin.

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