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Fra-1 regulates its target genes via binding to remote enhancers without exerting major control on chromatin architecture in triple negative breast cancers

The ubiquitous family of dimeric transcription factors AP-1 is made up of Fos and Jun family proteins. It has long been thought to operate principally at gene promoters and how it controls transcription is still ill-understood. The Fos family protein Fra-1 is overexpressed in triple negative breast...

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Autores principales: Bejjani, Fabienne, Tolza, Claire, Boulanger, Mathias, Downes, Damien, Romero, Raphaël, Maqbool, Muhammad Ahmad, Zine El Aabidine, Amal, Andrau, Jean-Christophe, Lebre, Sophie, Brehelin, Laurent, Parrinello, Hughes, Rohmer, Marine, Kaoma, Tony, Vallar, Laurent, Hughes, Jim R, Zibara, Kazem, Lecellier, Charles-Henri, Piechaczyk, Marc, Jariel-Encontre, Isabelle
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7968996/
https://www.ncbi.nlm.nih.gov/pubmed/33533919
http://dx.doi.org/10.1093/nar/gkab053
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author Bejjani, Fabienne
Tolza, Claire
Boulanger, Mathias
Downes, Damien
Romero, Raphaël
Maqbool, Muhammad Ahmad
Zine El Aabidine, Amal
Andrau, Jean-Christophe
Lebre, Sophie
Brehelin, Laurent
Parrinello, Hughes
Rohmer, Marine
Kaoma, Tony
Vallar, Laurent
Hughes, Jim R
Zibara, Kazem
Lecellier, Charles-Henri
Piechaczyk, Marc
Jariel-Encontre, Isabelle
author_facet Bejjani, Fabienne
Tolza, Claire
Boulanger, Mathias
Downes, Damien
Romero, Raphaël
Maqbool, Muhammad Ahmad
Zine El Aabidine, Amal
Andrau, Jean-Christophe
Lebre, Sophie
Brehelin, Laurent
Parrinello, Hughes
Rohmer, Marine
Kaoma, Tony
Vallar, Laurent
Hughes, Jim R
Zibara, Kazem
Lecellier, Charles-Henri
Piechaczyk, Marc
Jariel-Encontre, Isabelle
author_sort Bejjani, Fabienne
collection PubMed
description The ubiquitous family of dimeric transcription factors AP-1 is made up of Fos and Jun family proteins. It has long been thought to operate principally at gene promoters and how it controls transcription is still ill-understood. The Fos family protein Fra-1 is overexpressed in triple negative breast cancers (TNBCs) where it contributes to tumor aggressiveness. To address its transcriptional actions in TNBCs, we combined transcriptomics, ChIP-seqs, machine learning and NG Capture-C. Additionally, we studied its Fos family kin Fra-2 also expressed in TNBCs, albeit much less. Consistently with their pleiotropic effects, Fra-1 and Fra-2 up- and downregulate individually, together or redundantly many genes associated with a wide range of biological processes. Target gene regulation is principally due to binding of Fra-1 and Fra-2 at regulatory elements located distantly from cognate promoters where Fra-1 modulates the recruitment of the transcriptional co-regulator p300/CBP and where differences in AP-1 variant motif recognition can underlie preferential Fra-1- or Fra-2 bindings. Our work also shows no major role for Fra-1 in chromatin architecture control at target gene loci, but suggests collaboration between Fra-1-bound and -unbound enhancers within chromatin hubs sometimes including promoters for other Fra-1-regulated genes. Our work impacts our view of AP-1.
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spelling pubmed-79689962021-03-22 Fra-1 regulates its target genes via binding to remote enhancers without exerting major control on chromatin architecture in triple negative breast cancers Bejjani, Fabienne Tolza, Claire Boulanger, Mathias Downes, Damien Romero, Raphaël Maqbool, Muhammad Ahmad Zine El Aabidine, Amal Andrau, Jean-Christophe Lebre, Sophie Brehelin, Laurent Parrinello, Hughes Rohmer, Marine Kaoma, Tony Vallar, Laurent Hughes, Jim R Zibara, Kazem Lecellier, Charles-Henri Piechaczyk, Marc Jariel-Encontre, Isabelle Nucleic Acids Res Gene regulation, Chromatin and Epigenetics The ubiquitous family of dimeric transcription factors AP-1 is made up of Fos and Jun family proteins. It has long been thought to operate principally at gene promoters and how it controls transcription is still ill-understood. The Fos family protein Fra-1 is overexpressed in triple negative breast cancers (TNBCs) where it contributes to tumor aggressiveness. To address its transcriptional actions in TNBCs, we combined transcriptomics, ChIP-seqs, machine learning and NG Capture-C. Additionally, we studied its Fos family kin Fra-2 also expressed in TNBCs, albeit much less. Consistently with their pleiotropic effects, Fra-1 and Fra-2 up- and downregulate individually, together or redundantly many genes associated with a wide range of biological processes. Target gene regulation is principally due to binding of Fra-1 and Fra-2 at regulatory elements located distantly from cognate promoters where Fra-1 modulates the recruitment of the transcriptional co-regulator p300/CBP and where differences in AP-1 variant motif recognition can underlie preferential Fra-1- or Fra-2 bindings. Our work also shows no major role for Fra-1 in chromatin architecture control at target gene loci, but suggests collaboration between Fra-1-bound and -unbound enhancers within chromatin hubs sometimes including promoters for other Fra-1-regulated genes. Our work impacts our view of AP-1. Oxford University Press 2021-02-03 /pmc/articles/PMC7968996/ /pubmed/33533919 http://dx.doi.org/10.1093/nar/gkab053 Text en © The Author(s) 2021. Published by Oxford University Press on behalf of Nucleic Acids Research. http://creativecommons.org/licenses/by/4.0/ This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted reuse, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Gene regulation, Chromatin and Epigenetics
Bejjani, Fabienne
Tolza, Claire
Boulanger, Mathias
Downes, Damien
Romero, Raphaël
Maqbool, Muhammad Ahmad
Zine El Aabidine, Amal
Andrau, Jean-Christophe
Lebre, Sophie
Brehelin, Laurent
Parrinello, Hughes
Rohmer, Marine
Kaoma, Tony
Vallar, Laurent
Hughes, Jim R
Zibara, Kazem
Lecellier, Charles-Henri
Piechaczyk, Marc
Jariel-Encontre, Isabelle
Fra-1 regulates its target genes via binding to remote enhancers without exerting major control on chromatin architecture in triple negative breast cancers
title Fra-1 regulates its target genes via binding to remote enhancers without exerting major control on chromatin architecture in triple negative breast cancers
title_full Fra-1 regulates its target genes via binding to remote enhancers without exerting major control on chromatin architecture in triple negative breast cancers
title_fullStr Fra-1 regulates its target genes via binding to remote enhancers without exerting major control on chromatin architecture in triple negative breast cancers
title_full_unstemmed Fra-1 regulates its target genes via binding to remote enhancers without exerting major control on chromatin architecture in triple negative breast cancers
title_short Fra-1 regulates its target genes via binding to remote enhancers without exerting major control on chromatin architecture in triple negative breast cancers
title_sort fra-1 regulates its target genes via binding to remote enhancers without exerting major control on chromatin architecture in triple negative breast cancers
topic Gene regulation, Chromatin and Epigenetics
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7968996/
https://www.ncbi.nlm.nih.gov/pubmed/33533919
http://dx.doi.org/10.1093/nar/gkab053
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