Cargando…

Transcriptional Mechanisms of Proneural Factors and REST in Regulating Neuronal Reprogramming of Astrocytes

Direct lineage reprogramming induces dramatic shifts in cellular identity, employing poorly understood mechanisms. Recently, we demonstrated that expression of Neurog2 or Ascl1 in postnatal mouse astrocytes generates glutamatergic or GABAergic neurons. Here, we take advantage of this model to study...

Descripción completa

Detalles Bibliográficos
Autores principales: Masserdotti, Giacomo, Gillotin, Sébastien, Sutor, Bernd, Drechsel, Daniela, Irmler, Martin, Jørgensen, Helle F., Sass, Steffen, Theis, Fabian J., Beckers, Johannes, Berninger, Benedikt, Guillemot, François, Götz, Magdalena
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Cell Press 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4509553/
https://www.ncbi.nlm.nih.gov/pubmed/26119235
http://dx.doi.org/10.1016/j.stem.2015.05.014
_version_ 1782382050376941568
author Masserdotti, Giacomo
Gillotin, Sébastien
Sutor, Bernd
Drechsel, Daniela
Irmler, Martin
Jørgensen, Helle F.
Sass, Steffen
Theis, Fabian J.
Beckers, Johannes
Berninger, Benedikt
Guillemot, François
Götz, Magdalena
author_facet Masserdotti, Giacomo
Gillotin, Sébastien
Sutor, Bernd
Drechsel, Daniela
Irmler, Martin
Jørgensen, Helle F.
Sass, Steffen
Theis, Fabian J.
Beckers, Johannes
Berninger, Benedikt
Guillemot, François
Götz, Magdalena
author_sort Masserdotti, Giacomo
collection PubMed
description Direct lineage reprogramming induces dramatic shifts in cellular identity, employing poorly understood mechanisms. Recently, we demonstrated that expression of Neurog2 or Ascl1 in postnatal mouse astrocytes generates glutamatergic or GABAergic neurons. Here, we take advantage of this model to study dynamics of neuronal cell fate acquisition at the transcriptional level. We found that Neurog2 and Ascl1 rapidly elicited distinct neurogenic programs with only a small subset of shared target genes. Within this subset, only NeuroD4 could by itself induce neuronal reprogramming in both mouse and human astrocytes, while co-expression with Insm1 was required for glutamatergic maturation. Cultured astrocytes gradually became refractory to reprogramming, in part by the repressor REST preventing Neurog2 from binding to the NeuroD4 promoter. Notably, in astrocytes refractory to Neurog2 activation, the underlying neurogenic program remained amenable to reprogramming by exogenous NeuroD4. Our findings support a model of temporal hierarchy for cell fate change during neuronal reprogramming.
format Online
Article
Text
id pubmed-4509553
institution National Center for Biotechnology Information
language English
publishDate 2015
publisher Cell Press
record_format MEDLINE/PubMed
spelling pubmed-45095532015-08-01 Transcriptional Mechanisms of Proneural Factors and REST in Regulating Neuronal Reprogramming of Astrocytes Masserdotti, Giacomo Gillotin, Sébastien Sutor, Bernd Drechsel, Daniela Irmler, Martin Jørgensen, Helle F. Sass, Steffen Theis, Fabian J. Beckers, Johannes Berninger, Benedikt Guillemot, François Götz, Magdalena Cell Stem Cell Article Direct lineage reprogramming induces dramatic shifts in cellular identity, employing poorly understood mechanisms. Recently, we demonstrated that expression of Neurog2 or Ascl1 in postnatal mouse astrocytes generates glutamatergic or GABAergic neurons. Here, we take advantage of this model to study dynamics of neuronal cell fate acquisition at the transcriptional level. We found that Neurog2 and Ascl1 rapidly elicited distinct neurogenic programs with only a small subset of shared target genes. Within this subset, only NeuroD4 could by itself induce neuronal reprogramming in both mouse and human astrocytes, while co-expression with Insm1 was required for glutamatergic maturation. Cultured astrocytes gradually became refractory to reprogramming, in part by the repressor REST preventing Neurog2 from binding to the NeuroD4 promoter. Notably, in astrocytes refractory to Neurog2 activation, the underlying neurogenic program remained amenable to reprogramming by exogenous NeuroD4. Our findings support a model of temporal hierarchy for cell fate change during neuronal reprogramming. Cell Press 2015-07-02 /pmc/articles/PMC4509553/ /pubmed/26119235 http://dx.doi.org/10.1016/j.stem.2015.05.014 Text en © 2015 The Authors http://creativecommons.org/licenses/by/4.0/ This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Masserdotti, Giacomo
Gillotin, Sébastien
Sutor, Bernd
Drechsel, Daniela
Irmler, Martin
Jørgensen, Helle F.
Sass, Steffen
Theis, Fabian J.
Beckers, Johannes
Berninger, Benedikt
Guillemot, François
Götz, Magdalena
Transcriptional Mechanisms of Proneural Factors and REST in Regulating Neuronal Reprogramming of Astrocytes
title Transcriptional Mechanisms of Proneural Factors and REST in Regulating Neuronal Reprogramming of Astrocytes
title_full Transcriptional Mechanisms of Proneural Factors and REST in Regulating Neuronal Reprogramming of Astrocytes
title_fullStr Transcriptional Mechanisms of Proneural Factors and REST in Regulating Neuronal Reprogramming of Astrocytes
title_full_unstemmed Transcriptional Mechanisms of Proneural Factors and REST in Regulating Neuronal Reprogramming of Astrocytes
title_short Transcriptional Mechanisms of Proneural Factors and REST in Regulating Neuronal Reprogramming of Astrocytes
title_sort transcriptional mechanisms of proneural factors and rest in regulating neuronal reprogramming of astrocytes
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4509553/
https://www.ncbi.nlm.nih.gov/pubmed/26119235
http://dx.doi.org/10.1016/j.stem.2015.05.014
work_keys_str_mv AT masserdottigiacomo transcriptionalmechanismsofproneuralfactorsandrestinregulatingneuronalreprogrammingofastrocytes
AT gillotinsebastien transcriptionalmechanismsofproneuralfactorsandrestinregulatingneuronalreprogrammingofastrocytes
AT sutorbernd transcriptionalmechanismsofproneuralfactorsandrestinregulatingneuronalreprogrammingofastrocytes
AT drechseldaniela transcriptionalmechanismsofproneuralfactorsandrestinregulatingneuronalreprogrammingofastrocytes
AT irmlermartin transcriptionalmechanismsofproneuralfactorsandrestinregulatingneuronalreprogrammingofastrocytes
AT jørgensenhellef transcriptionalmechanismsofproneuralfactorsandrestinregulatingneuronalreprogrammingofastrocytes
AT sasssteffen transcriptionalmechanismsofproneuralfactorsandrestinregulatingneuronalreprogrammingofastrocytes
AT theisfabianj transcriptionalmechanismsofproneuralfactorsandrestinregulatingneuronalreprogrammingofastrocytes
AT beckersjohannes transcriptionalmechanismsofproneuralfactorsandrestinregulatingneuronalreprogrammingofastrocytes
AT berningerbenedikt transcriptionalmechanismsofproneuralfactorsandrestinregulatingneuronalreprogrammingofastrocytes
AT guillemotfrancois transcriptionalmechanismsofproneuralfactorsandrestinregulatingneuronalreprogrammingofastrocytes
AT gotzmagdalena transcriptionalmechanismsofproneuralfactorsandrestinregulatingneuronalreprogrammingofastrocytes