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Transcriptional addiction in cancer cells is mediated by YAP/TAZ through BRD4

Cancer cells rely on dysregulated gene expression. This establishes specific transcriptional addictions that may be therapeutically exploited. Yet, the mechanisms ultimately responsible for these addictions are poorly understood. Here we investigated the transcriptional dependencies of transformed c...

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Autores principales: Zanconato, Francesca, Battilana, Giusy, Forcato, Mattia, Filippi, Letizia, Azzolin, Luca, Manfrin, Andrea, Quaranta, Erika, Di Biagio, Daniele, Sigismondo, Gianluca, Guzzardo, Vincenza, Lejeune, Pascale, Haendler, Bernard, Krijgsveld, Jeroen, Fassan, Matteo, Bicciato, Silvio, Cordenonsi, Michelangelo, Piccolo, Stefano
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6181206/
https://www.ncbi.nlm.nih.gov/pubmed/30224758
http://dx.doi.org/10.1038/s41591-018-0158-8
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author Zanconato, Francesca
Battilana, Giusy
Forcato, Mattia
Filippi, Letizia
Azzolin, Luca
Manfrin, Andrea
Quaranta, Erika
Di Biagio, Daniele
Sigismondo, Gianluca
Guzzardo, Vincenza
Lejeune, Pascale
Haendler, Bernard
Krijgsveld, Jeroen
Fassan, Matteo
Bicciato, Silvio
Cordenonsi, Michelangelo
Piccolo, Stefano
author_facet Zanconato, Francesca
Battilana, Giusy
Forcato, Mattia
Filippi, Letizia
Azzolin, Luca
Manfrin, Andrea
Quaranta, Erika
Di Biagio, Daniele
Sigismondo, Gianluca
Guzzardo, Vincenza
Lejeune, Pascale
Haendler, Bernard
Krijgsveld, Jeroen
Fassan, Matteo
Bicciato, Silvio
Cordenonsi, Michelangelo
Piccolo, Stefano
author_sort Zanconato, Francesca
collection PubMed
description Cancer cells rely on dysregulated gene expression. This establishes specific transcriptional addictions that may be therapeutically exploited. Yet, the mechanisms ultimately responsible for these addictions are poorly understood. Here we investigated the transcriptional dependencies of transformed cells to transcription factors YAP and TAZ. YAP/TAZ physically engage the general coactivator BRD4, dictating the genome-wide association of BRD4 to chromatin. YAP/TAZ flag a large set of enhancers with super-enhancer-like functional properties. YAP/TAZ-bound enhancers mediate recruitment of BRD4 and Pol II at YAP/TAZ-regulated promoters, boosting expression of a host of growth-regulating genes. Treatment with small molecule inhibitors of BRD4 blunts YAP/TAZ pro-tumorigenic activity in several cell/tissue contexts, causes regression of pre-established, YAP/TAZ-addicted neoplastic lesions, and reverts drug resistance. This work sheds light on essential mediators, mechanisms and genome-wide regulatory elements responsible for transcriptional addiction in cancer and lays the groundwork for a rational use of BET inhibitors according to YAP/TAZ biology.
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spelling pubmed-61812062019-03-17 Transcriptional addiction in cancer cells is mediated by YAP/TAZ through BRD4 Zanconato, Francesca Battilana, Giusy Forcato, Mattia Filippi, Letizia Azzolin, Luca Manfrin, Andrea Quaranta, Erika Di Biagio, Daniele Sigismondo, Gianluca Guzzardo, Vincenza Lejeune, Pascale Haendler, Bernard Krijgsveld, Jeroen Fassan, Matteo Bicciato, Silvio Cordenonsi, Michelangelo Piccolo, Stefano Nat Med Article Cancer cells rely on dysregulated gene expression. This establishes specific transcriptional addictions that may be therapeutically exploited. Yet, the mechanisms ultimately responsible for these addictions are poorly understood. Here we investigated the transcriptional dependencies of transformed cells to transcription factors YAP and TAZ. YAP/TAZ physically engage the general coactivator BRD4, dictating the genome-wide association of BRD4 to chromatin. YAP/TAZ flag a large set of enhancers with super-enhancer-like functional properties. YAP/TAZ-bound enhancers mediate recruitment of BRD4 and Pol II at YAP/TAZ-regulated promoters, boosting expression of a host of growth-regulating genes. Treatment with small molecule inhibitors of BRD4 blunts YAP/TAZ pro-tumorigenic activity in several cell/tissue contexts, causes regression of pre-established, YAP/TAZ-addicted neoplastic lesions, and reverts drug resistance. This work sheds light on essential mediators, mechanisms and genome-wide regulatory elements responsible for transcriptional addiction in cancer and lays the groundwork for a rational use of BET inhibitors according to YAP/TAZ biology. 2018-09-17 2018-10 /pmc/articles/PMC6181206/ /pubmed/30224758 http://dx.doi.org/10.1038/s41591-018-0158-8 Text en Users may view, print, copy, and download 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
Zanconato, Francesca
Battilana, Giusy
Forcato, Mattia
Filippi, Letizia
Azzolin, Luca
Manfrin, Andrea
Quaranta, Erika
Di Biagio, Daniele
Sigismondo, Gianluca
Guzzardo, Vincenza
Lejeune, Pascale
Haendler, Bernard
Krijgsveld, Jeroen
Fassan, Matteo
Bicciato, Silvio
Cordenonsi, Michelangelo
Piccolo, Stefano
Transcriptional addiction in cancer cells is mediated by YAP/TAZ through BRD4
title Transcriptional addiction in cancer cells is mediated by YAP/TAZ through BRD4
title_full Transcriptional addiction in cancer cells is mediated by YAP/TAZ through BRD4
title_fullStr Transcriptional addiction in cancer cells is mediated by YAP/TAZ through BRD4
title_full_unstemmed Transcriptional addiction in cancer cells is mediated by YAP/TAZ through BRD4
title_short Transcriptional addiction in cancer cells is mediated by YAP/TAZ through BRD4
title_sort transcriptional addiction in cancer cells is mediated by yap/taz through brd4
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6181206/
https://www.ncbi.nlm.nih.gov/pubmed/30224758
http://dx.doi.org/10.1038/s41591-018-0158-8
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