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A Switch in p53 Dynamics Marks Cells That Escape from DSB-Induced Cell Cycle Arrest

Cellular responses to stimuli can evolve over time, resulting in distinct early and late phases in response to a single signal. DNA damage induces a complex response that is largely orchestrated by the transcription factor p53, whose dynamics influence whether a damaged cell will arrest and repair t...

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Autores principales: Tsabar, Michael, Mock, Caroline S., Venkatachalam, Veena, Reyes, Jose, Karhohs, Kyle W., Oliver, Trudy G., Regev, Aviv, Jambhekar, Ashwini, Lahav, Galit
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7521664/
https://www.ncbi.nlm.nih.gov/pubmed/32755587
http://dx.doi.org/10.1016/j.celrep.2020.107995
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author Tsabar, Michael
Mock, Caroline S.
Venkatachalam, Veena
Reyes, Jose
Karhohs, Kyle W.
Oliver, Trudy G.
Regev, Aviv
Jambhekar, Ashwini
Lahav, Galit
author_facet Tsabar, Michael
Mock, Caroline S.
Venkatachalam, Veena
Reyes, Jose
Karhohs, Kyle W.
Oliver, Trudy G.
Regev, Aviv
Jambhekar, Ashwini
Lahav, Galit
author_sort Tsabar, Michael
collection PubMed
description Cellular responses to stimuli can evolve over time, resulting in distinct early and late phases in response to a single signal. DNA damage induces a complex response that is largely orchestrated by the transcription factor p53, whose dynamics influence whether a damaged cell will arrest and repair the damage or will initiate cell death. How p53 responses and cellular outcomes evolve in the presence of continuous DNA damage remains unknown. Here, we have found that a subset of cells switches from oscillating to sustained p53 dynamics several days after undergoing damage. The switch results from cell cycle progression in the presence of damaged DNA, which activates the caspase-2-PIDDosome, a complex that stabilizes p53 by inactivating its negative regulator MDM2. This work defines a molecular pathway that is activated if the canonical checkpoints fail to halt mitosis in the presence of damaged DNA.
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spelling pubmed-75216642020-09-28 A Switch in p53 Dynamics Marks Cells That Escape from DSB-Induced Cell Cycle Arrest Tsabar, Michael Mock, Caroline S. Venkatachalam, Veena Reyes, Jose Karhohs, Kyle W. Oliver, Trudy G. Regev, Aviv Jambhekar, Ashwini Lahav, Galit Cell Rep Article Cellular responses to stimuli can evolve over time, resulting in distinct early and late phases in response to a single signal. DNA damage induces a complex response that is largely orchestrated by the transcription factor p53, whose dynamics influence whether a damaged cell will arrest and repair the damage or will initiate cell death. How p53 responses and cellular outcomes evolve in the presence of continuous DNA damage remains unknown. Here, we have found that a subset of cells switches from oscillating to sustained p53 dynamics several days after undergoing damage. The switch results from cell cycle progression in the presence of damaged DNA, which activates the caspase-2-PIDDosome, a complex that stabilizes p53 by inactivating its negative regulator MDM2. This work defines a molecular pathway that is activated if the canonical checkpoints fail to halt mitosis in the presence of damaged DNA. 2020-08-04 /pmc/articles/PMC7521664/ /pubmed/32755587 http://dx.doi.org/10.1016/j.celrep.2020.107995 Text en http://creativecommons.org/licenses/by-nc-nd/4.0/ This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Article
Tsabar, Michael
Mock, Caroline S.
Venkatachalam, Veena
Reyes, Jose
Karhohs, Kyle W.
Oliver, Trudy G.
Regev, Aviv
Jambhekar, Ashwini
Lahav, Galit
A Switch in p53 Dynamics Marks Cells That Escape from DSB-Induced Cell Cycle Arrest
title A Switch in p53 Dynamics Marks Cells That Escape from DSB-Induced Cell Cycle Arrest
title_full A Switch in p53 Dynamics Marks Cells That Escape from DSB-Induced Cell Cycle Arrest
title_fullStr A Switch in p53 Dynamics Marks Cells That Escape from DSB-Induced Cell Cycle Arrest
title_full_unstemmed A Switch in p53 Dynamics Marks Cells That Escape from DSB-Induced Cell Cycle Arrest
title_short A Switch in p53 Dynamics Marks Cells That Escape from DSB-Induced Cell Cycle Arrest
title_sort switch in p53 dynamics marks cells that escape from dsb-induced cell cycle arrest
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7521664/
https://www.ncbi.nlm.nih.gov/pubmed/32755587
http://dx.doi.org/10.1016/j.celrep.2020.107995
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