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The Elongation Complex Components BRD4 and MLLT3/AF9 Are Transcriptional Coactivators of Nuclear Retinoid Receptors

Nuclear all-trans retinoic acid receptors (RARs) initiate early transcriptional events which engage pluripotent cells to differentiate into specific lineages. RAR-controlled transactivation depends mostly on agonist-induced structural transitions in RAR C-terminus (AF-2), thus bridging coactivators...

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Autores principales: Flajollet, Sébastien, Rachez, Christophe, Ploton, Maheul, Schulz, Céline, Gallais, Rozenn, Métivier, Raphaël, Pawlak, Michal, Leray, Aymeric, Issulahi, Al Amine, Héliot, Laurent, Staels, Bart, Salbert, Gilles, Lefebvre, Philippe
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3677938/
https://www.ncbi.nlm.nih.gov/pubmed/23762261
http://dx.doi.org/10.1371/journal.pone.0064880
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author Flajollet, Sébastien
Rachez, Christophe
Ploton, Maheul
Schulz, Céline
Gallais, Rozenn
Métivier, Raphaël
Pawlak, Michal
Leray, Aymeric
Issulahi, Al Amine
Héliot, Laurent
Staels, Bart
Salbert, Gilles
Lefebvre, Philippe
author_facet Flajollet, Sébastien
Rachez, Christophe
Ploton, Maheul
Schulz, Céline
Gallais, Rozenn
Métivier, Raphaël
Pawlak, Michal
Leray, Aymeric
Issulahi, Al Amine
Héliot, Laurent
Staels, Bart
Salbert, Gilles
Lefebvre, Philippe
author_sort Flajollet, Sébastien
collection PubMed
description Nuclear all-trans retinoic acid receptors (RARs) initiate early transcriptional events which engage pluripotent cells to differentiate into specific lineages. RAR-controlled transactivation depends mostly on agonist-induced structural transitions in RAR C-terminus (AF-2), thus bridging coactivators or corepressors to chromatin, hence controlling preinitiation complex assembly. However, the contribution of other domains of RAR to its overall transcriptional activity remains poorly defined. A proteomic characterization of nuclear proteins interacting with RAR regions distinct from the AF-2 revealed unsuspected functional properties of the RAR N-terminus. Indeed, mass spectrometry fingerprinting identified the Bromodomain-containing protein 4 (BRD4) and ALL1-fused gene from chromosome 9 (AF9/MLLT3), known to associate with and regulates the activity of Positive Transcription Elongation Factor b (P-TEFb), as novel RAR coactivators. In addition to promoter sequences, RAR binds to genomic, transcribed regions of retinoid-regulated genes, in association with RNA polymerase II and as a function of P-TEFb activity. Knockdown of either AF9 or BRD4 expression affected differentially the neural differentiation of stem cell-like P19 cells. Clusters of retinoid-regulated genes were selectively dependent on BRD4 and/or AF9 expression, which correlated with RAR association to transcribed regions. Thus RAR establishes physical and functional links with components of the elongation complex, enabling the rapid retinoid-induced induction of genes required for neuronal differentiation. Our data thereby extends the previously known RAR interactome from classical transcriptional modulators to components of the elongation machinery, and unravel a functional role of RAR in transcriptional elongation.
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spelling pubmed-36779382013-06-12 The Elongation Complex Components BRD4 and MLLT3/AF9 Are Transcriptional Coactivators of Nuclear Retinoid Receptors Flajollet, Sébastien Rachez, Christophe Ploton, Maheul Schulz, Céline Gallais, Rozenn Métivier, Raphaël Pawlak, Michal Leray, Aymeric Issulahi, Al Amine Héliot, Laurent Staels, Bart Salbert, Gilles Lefebvre, Philippe PLoS One Research Article Nuclear all-trans retinoic acid receptors (RARs) initiate early transcriptional events which engage pluripotent cells to differentiate into specific lineages. RAR-controlled transactivation depends mostly on agonist-induced structural transitions in RAR C-terminus (AF-2), thus bridging coactivators or corepressors to chromatin, hence controlling preinitiation complex assembly. However, the contribution of other domains of RAR to its overall transcriptional activity remains poorly defined. A proteomic characterization of nuclear proteins interacting with RAR regions distinct from the AF-2 revealed unsuspected functional properties of the RAR N-terminus. Indeed, mass spectrometry fingerprinting identified the Bromodomain-containing protein 4 (BRD4) and ALL1-fused gene from chromosome 9 (AF9/MLLT3), known to associate with and regulates the activity of Positive Transcription Elongation Factor b (P-TEFb), as novel RAR coactivators. In addition to promoter sequences, RAR binds to genomic, transcribed regions of retinoid-regulated genes, in association with RNA polymerase II and as a function of P-TEFb activity. Knockdown of either AF9 or BRD4 expression affected differentially the neural differentiation of stem cell-like P19 cells. Clusters of retinoid-regulated genes were selectively dependent on BRD4 and/or AF9 expression, which correlated with RAR association to transcribed regions. Thus RAR establishes physical and functional links with components of the elongation complex, enabling the rapid retinoid-induced induction of genes required for neuronal differentiation. Our data thereby extends the previously known RAR interactome from classical transcriptional modulators to components of the elongation machinery, and unravel a functional role of RAR in transcriptional elongation. Public Library of Science 2013-06-10 /pmc/articles/PMC3677938/ /pubmed/23762261 http://dx.doi.org/10.1371/journal.pone.0064880 Text en © 2013 Flajollet 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
Flajollet, Sébastien
Rachez, Christophe
Ploton, Maheul
Schulz, Céline
Gallais, Rozenn
Métivier, Raphaël
Pawlak, Michal
Leray, Aymeric
Issulahi, Al Amine
Héliot, Laurent
Staels, Bart
Salbert, Gilles
Lefebvre, Philippe
The Elongation Complex Components BRD4 and MLLT3/AF9 Are Transcriptional Coactivators of Nuclear Retinoid Receptors
title The Elongation Complex Components BRD4 and MLLT3/AF9 Are Transcriptional Coactivators of Nuclear Retinoid Receptors
title_full The Elongation Complex Components BRD4 and MLLT3/AF9 Are Transcriptional Coactivators of Nuclear Retinoid Receptors
title_fullStr The Elongation Complex Components BRD4 and MLLT3/AF9 Are Transcriptional Coactivators of Nuclear Retinoid Receptors
title_full_unstemmed The Elongation Complex Components BRD4 and MLLT3/AF9 Are Transcriptional Coactivators of Nuclear Retinoid Receptors
title_short The Elongation Complex Components BRD4 and MLLT3/AF9 Are Transcriptional Coactivators of Nuclear Retinoid Receptors
title_sort elongation complex components brd4 and mllt3/af9 are transcriptional coactivators of nuclear retinoid receptors
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3677938/
https://www.ncbi.nlm.nih.gov/pubmed/23762261
http://dx.doi.org/10.1371/journal.pone.0064880
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