Cargando…

The p53 transcriptional response across tumor types reveals core and senescence-specific signatures modulated by long noncoding RNAs

The p53 pathway is a universal tumor suppressor mechanism that limits tumor progression by triggering apoptosis or permanent cell cycle arrest, called senescence. In recent years, efforts to reactivate p53 function in cancer have proven to be a successful therapeutic strategy in murine models and ha...

Descripción completa

Detalles Bibliográficos
Autores principales: Tesfaye, Ephrath, Martinez-Terroba, Elena, Bendor, Jordan, Winkler, Lauren, Olivero, Christiane, Chen, Kevin, Feldser, David M., Zamudio, Jesse R., Dimitrova, Nadya
Formato: Online Artículo Texto
Lenguaje:English
Publicado: National Academy of Sciences 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8346867/
https://www.ncbi.nlm.nih.gov/pubmed/34326251
http://dx.doi.org/10.1073/pnas.2025539118
_version_ 1783734956184305664
author Tesfaye, Ephrath
Martinez-Terroba, Elena
Bendor, Jordan
Winkler, Lauren
Olivero, Christiane
Chen, Kevin
Feldser, David M.
Zamudio, Jesse R.
Dimitrova, Nadya
author_facet Tesfaye, Ephrath
Martinez-Terroba, Elena
Bendor, Jordan
Winkler, Lauren
Olivero, Christiane
Chen, Kevin
Feldser, David M.
Zamudio, Jesse R.
Dimitrova, Nadya
author_sort Tesfaye, Ephrath
collection PubMed
description The p53 pathway is a universal tumor suppressor mechanism that limits tumor progression by triggering apoptosis or permanent cell cycle arrest, called senescence. In recent years, efforts to reactivate p53 function in cancer have proven to be a successful therapeutic strategy in murine models and have gained traction with the development of a range of small molecules targeting mutant p53. However, knowledge of the downstream mediators of p53 reactivation in different oncogenic contexts has been limited. Here, we utilized a panel of murine cancer cell lines from three distinct tumor types susceptible to alternative outcomes following p53 restoration to define unique and shared p53 transcriptional signatures. While we found that the majority of p53-bound sites and p53-responsive transcripts are tumor-type specific, analysis of shared targets identified a core signature of genes activated by p53 across all contexts. Furthermore, we identified repression of E2F and Myc target genes as a key feature of senescence. Characterization of p53-induced transcripts revealed core and senescence-specific long noncoding RNAs (lncRNAs) that are predominantly chromatin associated and whose production is coupled to cis-regulatory activities. Functional investigation of the contributions of p53-induced lncRNAs to p53-dependent outcomes highlighted Pvt1b, the p53-dependent isoform of Pvt1, as a mediator of p53-dependent senescence via Myc repression. Inhibition of Pvt1b led to decreased activation of senescence markers and increased levels of markers of proliferation. These findings shed light on the core and outcome-specific p53 restoration signatures across different oncogenic contexts and underscore the key role of the p53-Pvt1b-Myc regulatory axis in mediating proliferative arrest.
format Online
Article
Text
id pubmed-8346867
institution National Center for Biotechnology Information
language English
publishDate 2021
publisher National Academy of Sciences
record_format MEDLINE/PubMed
spelling pubmed-83468672021-08-23 The p53 transcriptional response across tumor types reveals core and senescence-specific signatures modulated by long noncoding RNAs Tesfaye, Ephrath Martinez-Terroba, Elena Bendor, Jordan Winkler, Lauren Olivero, Christiane Chen, Kevin Feldser, David M. Zamudio, Jesse R. Dimitrova, Nadya Proc Natl Acad Sci U S A Biological Sciences The p53 pathway is a universal tumor suppressor mechanism that limits tumor progression by triggering apoptosis or permanent cell cycle arrest, called senescence. In recent years, efforts to reactivate p53 function in cancer have proven to be a successful therapeutic strategy in murine models and have gained traction with the development of a range of small molecules targeting mutant p53. However, knowledge of the downstream mediators of p53 reactivation in different oncogenic contexts has been limited. Here, we utilized a panel of murine cancer cell lines from three distinct tumor types susceptible to alternative outcomes following p53 restoration to define unique and shared p53 transcriptional signatures. While we found that the majority of p53-bound sites and p53-responsive transcripts are tumor-type specific, analysis of shared targets identified a core signature of genes activated by p53 across all contexts. Furthermore, we identified repression of E2F and Myc target genes as a key feature of senescence. Characterization of p53-induced transcripts revealed core and senescence-specific long noncoding RNAs (lncRNAs) that are predominantly chromatin associated and whose production is coupled to cis-regulatory activities. Functional investigation of the contributions of p53-induced lncRNAs to p53-dependent outcomes highlighted Pvt1b, the p53-dependent isoform of Pvt1, as a mediator of p53-dependent senescence via Myc repression. Inhibition of Pvt1b led to decreased activation of senescence markers and increased levels of markers of proliferation. These findings shed light on the core and outcome-specific p53 restoration signatures across different oncogenic contexts and underscore the key role of the p53-Pvt1b-Myc regulatory axis in mediating proliferative arrest. National Academy of Sciences 2021-08-03 2021-07-29 /pmc/articles/PMC8346867/ /pubmed/34326251 http://dx.doi.org/10.1073/pnas.2025539118 Text en Copyright © 2021 the Author(s). Published by PNAS. https://creativecommons.org/licenses/by/4.0/This open access article is distributed under Creative Commons Attribution License 4.0 (CC BY) (https://creativecommons.org/licenses/by/4.0/) .
spellingShingle Biological Sciences
Tesfaye, Ephrath
Martinez-Terroba, Elena
Bendor, Jordan
Winkler, Lauren
Olivero, Christiane
Chen, Kevin
Feldser, David M.
Zamudio, Jesse R.
Dimitrova, Nadya
The p53 transcriptional response across tumor types reveals core and senescence-specific signatures modulated by long noncoding RNAs
title The p53 transcriptional response across tumor types reveals core and senescence-specific signatures modulated by long noncoding RNAs
title_full The p53 transcriptional response across tumor types reveals core and senescence-specific signatures modulated by long noncoding RNAs
title_fullStr The p53 transcriptional response across tumor types reveals core and senescence-specific signatures modulated by long noncoding RNAs
title_full_unstemmed The p53 transcriptional response across tumor types reveals core and senescence-specific signatures modulated by long noncoding RNAs
title_short The p53 transcriptional response across tumor types reveals core and senescence-specific signatures modulated by long noncoding RNAs
title_sort p53 transcriptional response across tumor types reveals core and senescence-specific signatures modulated by long noncoding rnas
topic Biological Sciences
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8346867/
https://www.ncbi.nlm.nih.gov/pubmed/34326251
http://dx.doi.org/10.1073/pnas.2025539118
work_keys_str_mv AT tesfayeephrath thep53transcriptionalresponseacrosstumortypesrevealscoreandsenescencespecificsignaturesmodulatedbylongnoncodingrnas
AT martinezterrobaelena thep53transcriptionalresponseacrosstumortypesrevealscoreandsenescencespecificsignaturesmodulatedbylongnoncodingrnas
AT bendorjordan thep53transcriptionalresponseacrosstumortypesrevealscoreandsenescencespecificsignaturesmodulatedbylongnoncodingrnas
AT winklerlauren thep53transcriptionalresponseacrosstumortypesrevealscoreandsenescencespecificsignaturesmodulatedbylongnoncodingrnas
AT oliverochristiane thep53transcriptionalresponseacrosstumortypesrevealscoreandsenescencespecificsignaturesmodulatedbylongnoncodingrnas
AT chenkevin thep53transcriptionalresponseacrosstumortypesrevealscoreandsenescencespecificsignaturesmodulatedbylongnoncodingrnas
AT feldserdavidm thep53transcriptionalresponseacrosstumortypesrevealscoreandsenescencespecificsignaturesmodulatedbylongnoncodingrnas
AT zamudiojesser thep53transcriptionalresponseacrosstumortypesrevealscoreandsenescencespecificsignaturesmodulatedbylongnoncodingrnas
AT dimitrovanadya thep53transcriptionalresponseacrosstumortypesrevealscoreandsenescencespecificsignaturesmodulatedbylongnoncodingrnas
AT tesfayeephrath p53transcriptionalresponseacrosstumortypesrevealscoreandsenescencespecificsignaturesmodulatedbylongnoncodingrnas
AT martinezterrobaelena p53transcriptionalresponseacrosstumortypesrevealscoreandsenescencespecificsignaturesmodulatedbylongnoncodingrnas
AT bendorjordan p53transcriptionalresponseacrosstumortypesrevealscoreandsenescencespecificsignaturesmodulatedbylongnoncodingrnas
AT winklerlauren p53transcriptionalresponseacrosstumortypesrevealscoreandsenescencespecificsignaturesmodulatedbylongnoncodingrnas
AT oliverochristiane p53transcriptionalresponseacrosstumortypesrevealscoreandsenescencespecificsignaturesmodulatedbylongnoncodingrnas
AT chenkevin p53transcriptionalresponseacrosstumortypesrevealscoreandsenescencespecificsignaturesmodulatedbylongnoncodingrnas
AT feldserdavidm p53transcriptionalresponseacrosstumortypesrevealscoreandsenescencespecificsignaturesmodulatedbylongnoncodingrnas
AT zamudiojesser p53transcriptionalresponseacrosstumortypesrevealscoreandsenescencespecificsignaturesmodulatedbylongnoncodingrnas
AT dimitrovanadya p53transcriptionalresponseacrosstumortypesrevealscoreandsenescencespecificsignaturesmodulatedbylongnoncodingrnas