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Escape from senescence in human diploid fibroblasts induced directly by mutant p53

J A Bond1, F S Wyllie, D Wynford-Thomas

  • 1Department of Pathology, University of Wales College of Medicine, Health Park, Cardiff, UK.

Oncogene
|July 1, 1994
PubMed

Insights

Mutant p53 alone can extend the lifespan of normal human fibroblasts, indicating its role in cellular aging. Wild-type p53

Area of Science:

  • Oncology
  • Cell Biology
  • Genetics

Background:

  • Cellular senescence restrains human tumor progression.
  • Tumorigenesis escape involves tumor suppressor gene loss.
  • The role of p53 mutation in tumor progression is uncertain.

Purpose of the Study:

  • To directly assess the effect of mutant p53 on pre-aged human diploid fibroblasts.
  • To determine if p53 mutation alone can alter fibroblast proliferative lifespan.
  • To investigate the role of wild-type p53 in mediating cellular senescence and growth arrest.

Main Methods:

  • Human diploid fibroblasts (HDF) were passaged to near-senescence.
  • HDF were infected with a retroviral vector encoding mutant p53 (ala143).
  • Proliferative lifespan and phenotypic effects of mutant p53 were assessed.

Main Results:

  • p53 mutation alone extended the proliferative lifespan of normal fibroblasts by ~17 population doublings.
  • Mutant p53 had no phenotypic effect on young fibroblasts.
  • Wild-type p53's function in tumor limitation may involve mediating growth arrest via p53-regulated genes like WAF-1/sdi-1.

Conclusions:

  • p53 mutation is sufficient to extend fibroblast proliferative lifespan.
  • Wild-type p53's tumor-limiting function includes mediating growth arrest.
  • Cellular senescence may be linked to p53's 'guardian of the genome' role through DNA damage perception.

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