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Updated: Jul 14, 2026

Induction and Validation of Cellular Senescence in Primary Human Cells
Published on: June 20, 2018
Cellular senescence in naevi and immortalisation in melanoma: a role for p16?
V C Gray-Schopfer1, S C Cheong, H Chong
1Division of Basic Medical Sciences, St George's, University of London, Cranmer Terrace, London SW17 0RE, UK.
Abstract:
Cellular senescence, the irreversible proliferative arrest seen in somatic cells after a limited number of divisions, is considered a crucial barrier to cancer, but direct evidence for this in vivo was lacking until recently. The best-known form of human cell senescence is attributed to telomere shortening and a DNA-damage response through p53 and p21. There is also a more rapid form of senescence, dependent on the p16-retinoblastoma pathway. p16 (CDKN2A) is a known melanoma susceptibility gene. Here, we use retrovirally mediated gene transfer to confirm that the normal form of senescence in cultured human melanocytes involves p16, since disruption of the p16/retinoblastoma pathway is required as well as telomerase activation for immortalisation. Expression (immunostaining) patterns of senescence mediators and markers in melanocytic lesions provide strong evidence that cell senescence occurs in benign melanocytic naevi (moles) in vivo and does not involve p53 or p21 upregulation, although p16 is widely expressed. In comparison, dysplastic naevi and early (radial growth-phase, RGP) melanomas show less p16 and some p53 and p21 immunostaining. All RGP melanomas expressed p21, suggesting areas of p53-mediated senescence, while most areas of advanced (vertical growth-phase) melanomas lacked both p16 and p21, implying escape from both forms of senescence (immortalisation). Moreover, nuclear p16 but not p21 expression can be induced in human melanocytes by oncogenic BRAF, as found in around 80% of naevi. We conclude that cell senescence can form a barrier to melanoma development. This also provides a potential explanation of why p16 is a melanoma suppressor gene.
Insights
Cellular senescence acts as a barrier against melanoma. Benign moles show p16-mediated senescence, while advanced melanomas evade both p16 and p53/p21 pathways, indicating immortalization.
Area of Science:
- Oncology
- Cell Biology
- Genetics
Background:
- Cellular senescence, an irreversible cell cycle arrest, is a known tumor suppressor mechanism.
- Two major pathways mediate senescence: telomere shortening (p53/p21) and the p16-retinoblastoma pathway.
- p16 (CDKN2A) is a known melanoma susceptibility gene, but its role in in vivo senescence was unclear.
Purpose of the Study:
- To investigate the role of cellular senescence in melanoma development.
- To determine the specific senescence pathways involved in benign and malignant melanocytic lesions.
- To explore the link between oncogenic BRAF, p16 expression, and melanoma suppression.
Main Methods:
- Retroviral gene transfer in cultured human melanocytes to study senescence pathways.
- Immunohistochemical analysis of senescence mediators (p16, p53, p21) in melanocytic nevi and melanoma tissues.
- Correlation of p16 and p21 expression with lesion type and BRAF mutation status.
Main Results:
- Senescence in benign nevi involves p16 but not p53/p21, and p16 can be induced by oncogenic BRAF.
- Dysplastic nevi and early melanomas show reduced p16 and some p53/p21 expression.
- Advanced melanomas exhibit loss of both p16 and p53/p21, suggesting escape from senescence and immortalization.
Conclusions:
- Cellular senescence, particularly p16-mediated, acts as a barrier to melanoma development.
- The p16-retinoblastoma pathway is crucial for senescence in benign melanocytic lesions.
- Melanoma progression involves the evasion of senescence pathways, contributing to immortalization.
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