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Acquisition of p53 mutations in response to the non-genotoxic p53 activator Nutlin-3

Wild-type p53 is a stress-responsive tumor suppressor and potent growth inhibitor. Genotoxic stresses (e.g. ionizing and UV radiation or chemotherapeutic drug treatment) can activate p53, but also induce mutations in the P53 gene and thus select for p53-mutated cells. Nutlin-3a (Nutlin) is pre-clini...

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Autores principales: Aziz, Moammir H., Shen, Hong, Maki, Carl G.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2011
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3347888/
https://www.ncbi.nlm.nih.gov/pubmed/21643018
http://dx.doi.org/10.1038/onc.2011.185
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author Aziz, Moammir H.
Shen, Hong
Maki, Carl G.
author_facet Aziz, Moammir H.
Shen, Hong
Maki, Carl G.
author_sort Aziz, Moammir H.
collection PubMed
description Wild-type p53 is a stress-responsive tumor suppressor and potent growth inhibitor. Genotoxic stresses (e.g. ionizing and UV radiation or chemotherapeutic drug treatment) can activate p53, but also induce mutations in the P53 gene and thus select for p53-mutated cells. Nutlin-3a (Nutlin) is pre-clinical drug that activates p53 in a non-genotoxic fashion. Nutlin occupies the p53-binding pocket of MDM2, activating p53 by blocking the p53-MDM2 interaction. Because Nutlin neither binds p53 directly nor introduces DNA damage, we hypothesized Nutlin would not induce P53 mutations and therefore not select for p53-mutated cells. To test this, populations of SJSA-1 (p53 wild-type) cancer cells were expanded that survived repeated Nutlin exposures, and individual clones were isolated. Group 1 clones were resistant to Nutlin-induced apoptosis, but still underwent growth-arrest. Surprisingly, while some Group 1 clones retained wild-type p53, others acquired a heterozygous p53 mutation. Apoptosis resistance in Group 1 clones was associated with decreased PUMA induction and decreased caspase 3/7 activation. Group 2 clones were resistant to both apoptosis and growth-arrest induced by Nutlin. Group 2 clones had acquired mutations in the p53 DNA-binding domain and expressed only mutant p53s that were induced by Nutlin treatment, but were unable to bind the P21 and PUMA gene promoters, and unable to activate transcription. These results demonstrate that non-genotoxic p53 activation (e.g. by Nutlin treatment) can lead to the acquisition of somatic mutations in p53 and select for p53-mutated cells. These findings have implications for the potential clinical use of Nutlin and other small molecule MDM2 antagonists.
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spelling pubmed-33478882012-05-17 Acquisition of p53 mutations in response to the non-genotoxic p53 activator Nutlin-3 Aziz, Moammir H. Shen, Hong Maki, Carl G. Oncogene Article Wild-type p53 is a stress-responsive tumor suppressor and potent growth inhibitor. Genotoxic stresses (e.g. ionizing and UV radiation or chemotherapeutic drug treatment) can activate p53, but also induce mutations in the P53 gene and thus select for p53-mutated cells. Nutlin-3a (Nutlin) is pre-clinical drug that activates p53 in a non-genotoxic fashion. Nutlin occupies the p53-binding pocket of MDM2, activating p53 by blocking the p53-MDM2 interaction. Because Nutlin neither binds p53 directly nor introduces DNA damage, we hypothesized Nutlin would not induce P53 mutations and therefore not select for p53-mutated cells. To test this, populations of SJSA-1 (p53 wild-type) cancer cells were expanded that survived repeated Nutlin exposures, and individual clones were isolated. Group 1 clones were resistant to Nutlin-induced apoptosis, but still underwent growth-arrest. Surprisingly, while some Group 1 clones retained wild-type p53, others acquired a heterozygous p53 mutation. Apoptosis resistance in Group 1 clones was associated with decreased PUMA induction and decreased caspase 3/7 activation. Group 2 clones were resistant to both apoptosis and growth-arrest induced by Nutlin. Group 2 clones had acquired mutations in the p53 DNA-binding domain and expressed only mutant p53s that were induced by Nutlin treatment, but were unable to bind the P21 and PUMA gene promoters, and unable to activate transcription. These results demonstrate that non-genotoxic p53 activation (e.g. by Nutlin treatment) can lead to the acquisition of somatic mutations in p53 and select for p53-mutated cells. These findings have implications for the potential clinical use of Nutlin and other small molecule MDM2 antagonists. 2011-06-06 2011-11-17 /pmc/articles/PMC3347888/ /pubmed/21643018 http://dx.doi.org/10.1038/onc.2011.185 Text en Users may view, print, copy, download and text and data- mine the content in such documents, for the purposes of academic research, subject always to the full Conditions of use: http://www.nature.com/authors/editorial_policies/license.html#terms
spellingShingle Article
Aziz, Moammir H.
Shen, Hong
Maki, Carl G.
Acquisition of p53 mutations in response to the non-genotoxic p53 activator Nutlin-3
title Acquisition of p53 mutations in response to the non-genotoxic p53 activator Nutlin-3
title_full Acquisition of p53 mutations in response to the non-genotoxic p53 activator Nutlin-3
title_fullStr Acquisition of p53 mutations in response to the non-genotoxic p53 activator Nutlin-3
title_full_unstemmed Acquisition of p53 mutations in response to the non-genotoxic p53 activator Nutlin-3
title_short Acquisition of p53 mutations in response to the non-genotoxic p53 activator Nutlin-3
title_sort acquisition of p53 mutations in response to the non-genotoxic p53 activator nutlin-3
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3347888/
https://www.ncbi.nlm.nih.gov/pubmed/21643018
http://dx.doi.org/10.1038/onc.2011.185
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