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p16(INK4a)-induced senescence is disabled by melanoma-associated mutations

The p16(INK4a)-Rb tumour suppressor pathway is required for the initiation and maintenance of cellular senescence, a state of permanent growth arrest that acts as a natural barrier against cancer progression. Senescence can be overcome if the pathway is not fully engaged, and this may occur when p16...

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Autores principales: Haferkamp, Sebastian, Becker, Therese M, Scurr, Lyndee L, Kefford, Richard F, Rizos, Helen
Formato: Texto
Lenguaje:English
Publicado: Blackwell Publishing Ltd 2008
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2582406/
https://www.ncbi.nlm.nih.gov/pubmed/18843795
http://dx.doi.org/10.1111/j.1474-9726.2008.00422.x
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author Haferkamp, Sebastian
Becker, Therese M
Scurr, Lyndee L
Kefford, Richard F
Rizos, Helen
author_facet Haferkamp, Sebastian
Becker, Therese M
Scurr, Lyndee L
Kefford, Richard F
Rizos, Helen
author_sort Haferkamp, Sebastian
collection PubMed
description The p16(INK4a)-Rb tumour suppressor pathway is required for the initiation and maintenance of cellular senescence, a state of permanent growth arrest that acts as a natural barrier against cancer progression. Senescence can be overcome if the pathway is not fully engaged, and this may occur when p16(INK4a) is inactivated. p16(INK4a) is frequently altered in human cancer and germline mutations affecting p16(INK4a) have been linked to melanoma susceptibility. To characterize the functions of melanoma-associated p16(INK4a) mutations, in terms of promoting proliferative arrest and initiating senescence, we utilized an inducible expression system in a melanoma cell model. We show that wild-type p16(INK4a) promotes rapid cell cycle arrest that leads to a senescence programme characterized by the appearance of chromatin foci, activation of acidic β-galactosidase activity, p53 independence and Rb dependence. Accumulation of wild-type p16(INK4a) also promoted cell enlargement and extensive vacuolization independent of Rb status. In contrast, the highly penetrant p16(INK4a) variants, R24P and A36P failed to arrest cell proliferation and did not initiate senescence. We also show that overexpression of CDK4, or its homologue CDK6, but not the downstream kinase, CDK2, inhibited the ability of wild-type p16(INK4a) to promote cell cycle arrest and senescence. Our data provide the first evidence that p16(INK4a) can initiate a CDK4/6-dependent autonomous senescence programme that is disabled by inherited melanoma-associated mutations.
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spelling pubmed-25824062008-11-12 p16(INK4a)-induced senescence is disabled by melanoma-associated mutations Haferkamp, Sebastian Becker, Therese M Scurr, Lyndee L Kefford, Richard F Rizos, Helen Aging Cell Original Articles The p16(INK4a)-Rb tumour suppressor pathway is required for the initiation and maintenance of cellular senescence, a state of permanent growth arrest that acts as a natural barrier against cancer progression. Senescence can be overcome if the pathway is not fully engaged, and this may occur when p16(INK4a) is inactivated. p16(INK4a) is frequently altered in human cancer and germline mutations affecting p16(INK4a) have been linked to melanoma susceptibility. To characterize the functions of melanoma-associated p16(INK4a) mutations, in terms of promoting proliferative arrest and initiating senescence, we utilized an inducible expression system in a melanoma cell model. We show that wild-type p16(INK4a) promotes rapid cell cycle arrest that leads to a senescence programme characterized by the appearance of chromatin foci, activation of acidic β-galactosidase activity, p53 independence and Rb dependence. Accumulation of wild-type p16(INK4a) also promoted cell enlargement and extensive vacuolization independent of Rb status. In contrast, the highly penetrant p16(INK4a) variants, R24P and A36P failed to arrest cell proliferation and did not initiate senescence. We also show that overexpression of CDK4, or its homologue CDK6, but not the downstream kinase, CDK2, inhibited the ability of wild-type p16(INK4a) to promote cell cycle arrest and senescence. Our data provide the first evidence that p16(INK4a) can initiate a CDK4/6-dependent autonomous senescence programme that is disabled by inherited melanoma-associated mutations. Blackwell Publishing Ltd 2008-10 /pmc/articles/PMC2582406/ /pubmed/18843795 http://dx.doi.org/10.1111/j.1474-9726.2008.00422.x Text en © 2008 The Authors Journal compilation © Blackwell Publishing Ltd/Anatomical Society of Great Britain and Ireland 2008
spellingShingle Original Articles
Haferkamp, Sebastian
Becker, Therese M
Scurr, Lyndee L
Kefford, Richard F
Rizos, Helen
p16(INK4a)-induced senescence is disabled by melanoma-associated mutations
title p16(INK4a)-induced senescence is disabled by melanoma-associated mutations
title_full p16(INK4a)-induced senescence is disabled by melanoma-associated mutations
title_fullStr p16(INK4a)-induced senescence is disabled by melanoma-associated mutations
title_full_unstemmed p16(INK4a)-induced senescence is disabled by melanoma-associated mutations
title_short p16(INK4a)-induced senescence is disabled by melanoma-associated mutations
title_sort p16(ink4a)-induced senescence is disabled by melanoma-associated mutations
topic Original Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2582406/
https://www.ncbi.nlm.nih.gov/pubmed/18843795
http://dx.doi.org/10.1111/j.1474-9726.2008.00422.x
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