Cargando…

Ascl1 Coordinately Regulates Gene Expression and the Chromatin Landscape during Neurogenesis

The proneural transcription factor Ascl1 coordinates gene expression in both proliferating and differentiating progenitors along the neuronal lineage. Here, we used a cellular model of neurogenesis to investigate how Ascl1 interacts with the chromatin landscape to regulate gene expression when promo...

Descripción completa

Detalles Bibliográficos
Autores principales: Raposo, Alexandre A.S.F., Vasconcelos, Francisca F., Drechsel, Daniela, Marie, Corentine, Johnston, Caroline, Dolle, Dirk, Bithell, Angela, Gillotin, Sébastien, van den Berg, Debbie L.C., Ettwiller, Laurence, Flicek, Paul, Crawford, Gregory E., Parras, Carlos M., Berninger, Benedikt, Buckley, Noel J., Guillemot, François, Castro, Diogo S.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Cell Press 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5383937/
https://www.ncbi.nlm.nih.gov/pubmed/25753420
http://dx.doi.org/10.1016/j.celrep.2015.02.025
_version_ 1782520373046149120
author Raposo, Alexandre A.S.F.
Vasconcelos, Francisca F.
Drechsel, Daniela
Marie, Corentine
Johnston, Caroline
Dolle, Dirk
Bithell, Angela
Gillotin, Sébastien
van den Berg, Debbie L.C.
Ettwiller, Laurence
Flicek, Paul
Crawford, Gregory E.
Parras, Carlos M.
Berninger, Benedikt
Buckley, Noel J.
Guillemot, François
Castro, Diogo S.
author_facet Raposo, Alexandre A.S.F.
Vasconcelos, Francisca F.
Drechsel, Daniela
Marie, Corentine
Johnston, Caroline
Dolle, Dirk
Bithell, Angela
Gillotin, Sébastien
van den Berg, Debbie L.C.
Ettwiller, Laurence
Flicek, Paul
Crawford, Gregory E.
Parras, Carlos M.
Berninger, Benedikt
Buckley, Noel J.
Guillemot, François
Castro, Diogo S.
author_sort Raposo, Alexandre A.S.F.
collection PubMed
description The proneural transcription factor Ascl1 coordinates gene expression in both proliferating and differentiating progenitors along the neuronal lineage. Here, we used a cellular model of neurogenesis to investigate how Ascl1 interacts with the chromatin landscape to regulate gene expression when promoting neuronal differentiation. We find that Ascl1 binding occurs mostly at distal enhancers and is associated with activation of gene transcription. Surprisingly, the accessibility of Ascl1 to its binding sites in neural stem/progenitor cells remains largely unchanged throughout their differentiation, as Ascl1 targets regions of both readily accessible and closed chromatin in proliferating cells. Moreover, binding of Ascl1 often precedes an increase in chromatin accessibility and the appearance of new regions of open chromatin, associated with de novo gene expression during differentiation. Our results reveal a function of Ascl1 in promoting chromatin accessibility during neurogenesis, linking the chromatin landscape at Ascl1 target regions with the temporal progression of its transcriptional program.
format Online
Article
Text
id pubmed-5383937
institution National Center for Biotechnology Information
language English
publishDate 2015
publisher Cell Press
record_format MEDLINE/PubMed
spelling pubmed-53839372017-04-12 Ascl1 Coordinately Regulates Gene Expression and the Chromatin Landscape during Neurogenesis Raposo, Alexandre A.S.F. Vasconcelos, Francisca F. Drechsel, Daniela Marie, Corentine Johnston, Caroline Dolle, Dirk Bithell, Angela Gillotin, Sébastien van den Berg, Debbie L.C. Ettwiller, Laurence Flicek, Paul Crawford, Gregory E. Parras, Carlos M. Berninger, Benedikt Buckley, Noel J. Guillemot, François Castro, Diogo S. Cell Rep Article The proneural transcription factor Ascl1 coordinates gene expression in both proliferating and differentiating progenitors along the neuronal lineage. Here, we used a cellular model of neurogenesis to investigate how Ascl1 interacts with the chromatin landscape to regulate gene expression when promoting neuronal differentiation. We find that Ascl1 binding occurs mostly at distal enhancers and is associated with activation of gene transcription. Surprisingly, the accessibility of Ascl1 to its binding sites in neural stem/progenitor cells remains largely unchanged throughout their differentiation, as Ascl1 targets regions of both readily accessible and closed chromatin in proliferating cells. Moreover, binding of Ascl1 often precedes an increase in chromatin accessibility and the appearance of new regions of open chromatin, associated with de novo gene expression during differentiation. Our results reveal a function of Ascl1 in promoting chromatin accessibility during neurogenesis, linking the chromatin landscape at Ascl1 target regions with the temporal progression of its transcriptional program. Cell Press 2015-03-05 /pmc/articles/PMC5383937/ /pubmed/25753420 http://dx.doi.org/10.1016/j.celrep.2015.02.025 Text en © 2015 The Authors http://creativecommons.org/licenses/by-nc-nd/3.0/ This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/3.0/).
spellingShingle Article
Raposo, Alexandre A.S.F.
Vasconcelos, Francisca F.
Drechsel, Daniela
Marie, Corentine
Johnston, Caroline
Dolle, Dirk
Bithell, Angela
Gillotin, Sébastien
van den Berg, Debbie L.C.
Ettwiller, Laurence
Flicek, Paul
Crawford, Gregory E.
Parras, Carlos M.
Berninger, Benedikt
Buckley, Noel J.
Guillemot, François
Castro, Diogo S.
Ascl1 Coordinately Regulates Gene Expression and the Chromatin Landscape during Neurogenesis
title Ascl1 Coordinately Regulates Gene Expression and the Chromatin Landscape during Neurogenesis
title_full Ascl1 Coordinately Regulates Gene Expression and the Chromatin Landscape during Neurogenesis
title_fullStr Ascl1 Coordinately Regulates Gene Expression and the Chromatin Landscape during Neurogenesis
title_full_unstemmed Ascl1 Coordinately Regulates Gene Expression and the Chromatin Landscape during Neurogenesis
title_short Ascl1 Coordinately Regulates Gene Expression and the Chromatin Landscape during Neurogenesis
title_sort ascl1 coordinately regulates gene expression and the chromatin landscape during neurogenesis
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5383937/
https://www.ncbi.nlm.nih.gov/pubmed/25753420
http://dx.doi.org/10.1016/j.celrep.2015.02.025
work_keys_str_mv AT raposoalexandreasf ascl1coordinatelyregulatesgeneexpressionandthechromatinlandscapeduringneurogenesis
AT vasconcelosfranciscaf ascl1coordinatelyregulatesgeneexpressionandthechromatinlandscapeduringneurogenesis
AT drechseldaniela ascl1coordinatelyregulatesgeneexpressionandthechromatinlandscapeduringneurogenesis
AT mariecorentine ascl1coordinatelyregulatesgeneexpressionandthechromatinlandscapeduringneurogenesis
AT johnstoncaroline ascl1coordinatelyregulatesgeneexpressionandthechromatinlandscapeduringneurogenesis
AT dolledirk ascl1coordinatelyregulatesgeneexpressionandthechromatinlandscapeduringneurogenesis
AT bithellangela ascl1coordinatelyregulatesgeneexpressionandthechromatinlandscapeduringneurogenesis
AT gillotinsebastien ascl1coordinatelyregulatesgeneexpressionandthechromatinlandscapeduringneurogenesis
AT vandenbergdebbielc ascl1coordinatelyregulatesgeneexpressionandthechromatinlandscapeduringneurogenesis
AT ettwillerlaurence ascl1coordinatelyregulatesgeneexpressionandthechromatinlandscapeduringneurogenesis
AT flicekpaul ascl1coordinatelyregulatesgeneexpressionandthechromatinlandscapeduringneurogenesis
AT crawfordgregorye ascl1coordinatelyregulatesgeneexpressionandthechromatinlandscapeduringneurogenesis
AT parrascarlosm ascl1coordinatelyregulatesgeneexpressionandthechromatinlandscapeduringneurogenesis
AT berningerbenedikt ascl1coordinatelyregulatesgeneexpressionandthechromatinlandscapeduringneurogenesis
AT buckleynoelj ascl1coordinatelyregulatesgeneexpressionandthechromatinlandscapeduringneurogenesis
AT guillemotfrancois ascl1coordinatelyregulatesgeneexpressionandthechromatinlandscapeduringneurogenesis
AT castrodiogos ascl1coordinatelyregulatesgeneexpressionandthechromatinlandscapeduringneurogenesis