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A DR4:tBID axis drives the p53 apoptotic response by promoting oligomerization of poised BAX

The cellular response to p53 activation varies greatly in a stimulus- and cell type-specific manner. Dissecting the molecular mechanisms defining these cell fate choices will assist the development of effective p53-based cancer therapies and also illuminate fundamental processes by which gene networ...

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Autores principales: Henry, Ryan E, Andrysik, Zdenek, París, Ramiro, Galbraith, Matthew D, Espinosa, Joaquín M
Formato: Online Artículo Texto
Lenguaje:English
Publicado: European Molecular Biology Organization 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3298004/
https://www.ncbi.nlm.nih.gov/pubmed/22246181
http://dx.doi.org/10.1038/emboj.2011.498
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author Henry, Ryan E
Andrysik, Zdenek
París, Ramiro
Galbraith, Matthew D
Espinosa, Joaquín M
author_facet Henry, Ryan E
Andrysik, Zdenek
París, Ramiro
Galbraith, Matthew D
Espinosa, Joaquín M
author_sort Henry, Ryan E
collection PubMed
description The cellular response to p53 activation varies greatly in a stimulus- and cell type-specific manner. Dissecting the molecular mechanisms defining these cell fate choices will assist the development of effective p53-based cancer therapies and also illuminate fundamental processes by which gene networks control cellular behaviour. Using an experimental system wherein stimulus-specific p53 responses are elicited by non-genotoxic versus genotoxic agents, we discovered a novel mechanism that determines whether cells undergo proliferation arrest or cell death. Strikingly, we observe that key mediators of cell-cycle arrest (p21, 14-3-3σ) and apoptosis (PUMA, BAX) are equally activated regardless of outcome. In fact, arresting cells display strong translocation of PUMA and BAX to the mitochondria, yet fail to release cytochrome C or activate caspases. Surprisingly, the key differential events in apoptotic cells are p53-dependent activation of the DR4 death receptor pathway, caspase 8-mediated cleavage of BID, and BID-dependent activation of poised BAX at the mitochondria. These results reveal a previously unappreciated role for DR4 and the extrinsic apoptotic pathway in cell fate choice following p53 activation.
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spelling pubmed-32980042012-03-09 A DR4:tBID axis drives the p53 apoptotic response by promoting oligomerization of poised BAX Henry, Ryan E Andrysik, Zdenek París, Ramiro Galbraith, Matthew D Espinosa, Joaquín M EMBO J Article The cellular response to p53 activation varies greatly in a stimulus- and cell type-specific manner. Dissecting the molecular mechanisms defining these cell fate choices will assist the development of effective p53-based cancer therapies and also illuminate fundamental processes by which gene networks control cellular behaviour. Using an experimental system wherein stimulus-specific p53 responses are elicited by non-genotoxic versus genotoxic agents, we discovered a novel mechanism that determines whether cells undergo proliferation arrest or cell death. Strikingly, we observe that key mediators of cell-cycle arrest (p21, 14-3-3σ) and apoptosis (PUMA, BAX) are equally activated regardless of outcome. In fact, arresting cells display strong translocation of PUMA and BAX to the mitochondria, yet fail to release cytochrome C or activate caspases. Surprisingly, the key differential events in apoptotic cells are p53-dependent activation of the DR4 death receptor pathway, caspase 8-mediated cleavage of BID, and BID-dependent activation of poised BAX at the mitochondria. These results reveal a previously unappreciated role for DR4 and the extrinsic apoptotic pathway in cell fate choice following p53 activation. European Molecular Biology Organization 2012-03-07 2012-01-13 /pmc/articles/PMC3298004/ /pubmed/22246181 http://dx.doi.org/10.1038/emboj.2011.498 Text en Copyright © 2012, European Molecular Biology Organization https://creativecommons.org/licenses/by-nc-sa/3.0/This is an open-access article distributed under the terms of the Creative Commons Attribution Noncommercial Share Alike 3.0 Unported License, which allows readers to alter, transform, or build upon the article and then distribute the resulting work under the same or similar license to this one. The work must be attributed back to the original author and commercial use is not permitted without specific permission.
spellingShingle Article
Henry, Ryan E
Andrysik, Zdenek
París, Ramiro
Galbraith, Matthew D
Espinosa, Joaquín M
A DR4:tBID axis drives the p53 apoptotic response by promoting oligomerization of poised BAX
title A DR4:tBID axis drives the p53 apoptotic response by promoting oligomerization of poised BAX
title_full A DR4:tBID axis drives the p53 apoptotic response by promoting oligomerization of poised BAX
title_fullStr A DR4:tBID axis drives the p53 apoptotic response by promoting oligomerization of poised BAX
title_full_unstemmed A DR4:tBID axis drives the p53 apoptotic response by promoting oligomerization of poised BAX
title_short A DR4:tBID axis drives the p53 apoptotic response by promoting oligomerization of poised BAX
title_sort dr4:tbid axis drives the p53 apoptotic response by promoting oligomerization of poised bax
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3298004/
https://www.ncbi.nlm.nih.gov/pubmed/22246181
http://dx.doi.org/10.1038/emboj.2011.498
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