Cargando…
Phenotype Specific Analyses Reveal Distinct Regulatory Mechanism for Chronically Activated p53
The downstream functions of the DNA binding tumor suppressor p53 vary depending on the cellular context, and persistent p53 activation has recently been implicated in tumor suppression and senescence. However, genome-wide information about p53-target gene regulation has been derived mostly from acut...
Autores principales: | , , , , , , , , , , , , , , , |
---|---|
Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
Public Library of Science
2015
|
Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4366240/ https://www.ncbi.nlm.nih.gov/pubmed/25790137 http://dx.doi.org/10.1371/journal.pgen.1005053 |
_version_ | 1782362343510900736 |
---|---|
author | Kirschner, Kristina Samarajiwa, Shamith A. Cairns, Jonathan M. Menon, Suraj Pérez-Mancera, Pedro A. Tomimatsu, Kosuke Bermejo-Rodriguez, Camino Ito, Yoko Chandra, Tamir Narita, Masako Lyons, Scott K. Lynch, Andy G. Kimura, Hiroshi Ohbayashi, Tetsuya Tavaré, Simon Narita, Masashi |
author_facet | Kirschner, Kristina Samarajiwa, Shamith A. Cairns, Jonathan M. Menon, Suraj Pérez-Mancera, Pedro A. Tomimatsu, Kosuke Bermejo-Rodriguez, Camino Ito, Yoko Chandra, Tamir Narita, Masako Lyons, Scott K. Lynch, Andy G. Kimura, Hiroshi Ohbayashi, Tetsuya Tavaré, Simon Narita, Masashi |
author_sort | Kirschner, Kristina |
collection | PubMed |
description | The downstream functions of the DNA binding tumor suppressor p53 vary depending on the cellular context, and persistent p53 activation has recently been implicated in tumor suppression and senescence. However, genome-wide information about p53-target gene regulation has been derived mostly from acute genotoxic conditions. Using ChIP-seq and expression data, we have found distinct p53 binding profiles between acutely activated (through DNA damage) and chronically activated (in senescent or pro-apoptotic conditions) p53. Compared to the classical ‘acute’ p53 binding profile, ‘chronic’ p53 peaks were closely associated with CpG-islands. Furthermore, the chronic CpG-island binding of p53 conferred distinct expression patterns between senescent and pro-apoptotic conditions. Using the p53 targets seen in the chronic conditions together with external high-throughput datasets, we have built p53 networks that revealed extensive self-regulatory ‘p53 hubs’ where p53 and many p53 targets can physically interact with each other. Integrating these results with public clinical datasets identified the cancer-associated lipogenic enzyme, SCD, which we found to be directly repressed by p53 through the CpG-island promoter, providing a mechanistic link between p53 and the ‘lipogenic phenotype’, a hallmark of cancer. Our data reveal distinct phenotype associations of chronic p53 targets that underlie specific gene regulatory mechanisms. |
format | Online Article Text |
id | pubmed-4366240 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2015 |
publisher | Public Library of Science |
record_format | MEDLINE/PubMed |
spelling | pubmed-43662402015-03-23 Phenotype Specific Analyses Reveal Distinct Regulatory Mechanism for Chronically Activated p53 Kirschner, Kristina Samarajiwa, Shamith A. Cairns, Jonathan M. Menon, Suraj Pérez-Mancera, Pedro A. Tomimatsu, Kosuke Bermejo-Rodriguez, Camino Ito, Yoko Chandra, Tamir Narita, Masako Lyons, Scott K. Lynch, Andy G. Kimura, Hiroshi Ohbayashi, Tetsuya Tavaré, Simon Narita, Masashi PLoS Genet Research Article The downstream functions of the DNA binding tumor suppressor p53 vary depending on the cellular context, and persistent p53 activation has recently been implicated in tumor suppression and senescence. However, genome-wide information about p53-target gene regulation has been derived mostly from acute genotoxic conditions. Using ChIP-seq and expression data, we have found distinct p53 binding profiles between acutely activated (through DNA damage) and chronically activated (in senescent or pro-apoptotic conditions) p53. Compared to the classical ‘acute’ p53 binding profile, ‘chronic’ p53 peaks were closely associated with CpG-islands. Furthermore, the chronic CpG-island binding of p53 conferred distinct expression patterns between senescent and pro-apoptotic conditions. Using the p53 targets seen in the chronic conditions together with external high-throughput datasets, we have built p53 networks that revealed extensive self-regulatory ‘p53 hubs’ where p53 and many p53 targets can physically interact with each other. Integrating these results with public clinical datasets identified the cancer-associated lipogenic enzyme, SCD, which we found to be directly repressed by p53 through the CpG-island promoter, providing a mechanistic link between p53 and the ‘lipogenic phenotype’, a hallmark of cancer. Our data reveal distinct phenotype associations of chronic p53 targets that underlie specific gene regulatory mechanisms. Public Library of Science 2015-03-19 /pmc/articles/PMC4366240/ /pubmed/25790137 http://dx.doi.org/10.1371/journal.pgen.1005053 Text en © 2015 Kirschner et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited. |
spellingShingle | Research Article Kirschner, Kristina Samarajiwa, Shamith A. Cairns, Jonathan M. Menon, Suraj Pérez-Mancera, Pedro A. Tomimatsu, Kosuke Bermejo-Rodriguez, Camino Ito, Yoko Chandra, Tamir Narita, Masako Lyons, Scott K. Lynch, Andy G. Kimura, Hiroshi Ohbayashi, Tetsuya Tavaré, Simon Narita, Masashi Phenotype Specific Analyses Reveal Distinct Regulatory Mechanism for Chronically Activated p53 |
title | Phenotype Specific Analyses Reveal Distinct Regulatory Mechanism for Chronically Activated p53 |
title_full | Phenotype Specific Analyses Reveal Distinct Regulatory Mechanism for Chronically Activated p53 |
title_fullStr | Phenotype Specific Analyses Reveal Distinct Regulatory Mechanism for Chronically Activated p53 |
title_full_unstemmed | Phenotype Specific Analyses Reveal Distinct Regulatory Mechanism for Chronically Activated p53 |
title_short | Phenotype Specific Analyses Reveal Distinct Regulatory Mechanism for Chronically Activated p53 |
title_sort | phenotype specific analyses reveal distinct regulatory mechanism for chronically activated p53 |
topic | Research Article |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4366240/ https://www.ncbi.nlm.nih.gov/pubmed/25790137 http://dx.doi.org/10.1371/journal.pgen.1005053 |
work_keys_str_mv | AT kirschnerkristina phenotypespecificanalysesrevealdistinctregulatorymechanismforchronicallyactivatedp53 AT samarajiwashamitha phenotypespecificanalysesrevealdistinctregulatorymechanismforchronicallyactivatedp53 AT cairnsjonathanm phenotypespecificanalysesrevealdistinctregulatorymechanismforchronicallyactivatedp53 AT menonsuraj phenotypespecificanalysesrevealdistinctregulatorymechanismforchronicallyactivatedp53 AT perezmancerapedroa phenotypespecificanalysesrevealdistinctregulatorymechanismforchronicallyactivatedp53 AT tomimatsukosuke phenotypespecificanalysesrevealdistinctregulatorymechanismforchronicallyactivatedp53 AT bermejorodriguezcamino phenotypespecificanalysesrevealdistinctregulatorymechanismforchronicallyactivatedp53 AT itoyoko phenotypespecificanalysesrevealdistinctregulatorymechanismforchronicallyactivatedp53 AT chandratamir phenotypespecificanalysesrevealdistinctregulatorymechanismforchronicallyactivatedp53 AT naritamasako phenotypespecificanalysesrevealdistinctregulatorymechanismforchronicallyactivatedp53 AT lyonsscottk phenotypespecificanalysesrevealdistinctregulatorymechanismforchronicallyactivatedp53 AT lynchandyg phenotypespecificanalysesrevealdistinctregulatorymechanismforchronicallyactivatedp53 AT kimurahiroshi phenotypespecificanalysesrevealdistinctregulatorymechanismforchronicallyactivatedp53 AT ohbayashitetsuya phenotypespecificanalysesrevealdistinctregulatorymechanismforchronicallyactivatedp53 AT tavaresimon phenotypespecificanalysesrevealdistinctregulatorymechanismforchronicallyactivatedp53 AT naritamasashi phenotypespecificanalysesrevealdistinctregulatorymechanismforchronicallyactivatedp53 |