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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.
Abstract:
Cellular senescence is thought to be a key restraint on the progression of human tumours, escape from which involves loss of function of tumour suppressor genes. The number and nature of the genes involved however is uncertain, in particular the role of p53 mutation, which is commonly correlated with tumour progression. To address this question, we used the novel approach of directly assessing the effect of mutant p53 on 'pre-aged' human diploid fibroblasts (HDF), thereby avoiding the uncertainty of additional cooperating events, inherent in transgenic models. HDF were passaged till near-senescent and then infected with an amphotropic retroviral vector encoding an ala143 human mutant p53. The results show conclusively that p53 mutation alone is sufficient to extend the proliferative lifespan of normal fibroblasts by approximately 17 population doublings, but has no phenotypic effect on 'young' fibroblasts. We conclude that a key tumour-limiting function of wild-type p53 is to mediate growth arrest after a given number of cell divisions, in agreement with data implicating a p53-regulated gene, WAF-1/sdi-1, in cellular senescence. This may be reconciled with its 'guardian of the genome' role, if telomere erosion, a key change in senescence, is perceived by the cell as a form of DNA 'damage'.
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.