Cargando…

Postnatal loss of Dlk1 imprinting in stem cells and niche-astrocytes regulates neurogenesis

The gene for the atypical Notch ligand Delta-like homologue 1 (Dlk1) encodes membrane-bound and secreted isoforms functioning in multiple developmental processes in vitro and in vivo. Dlk1, a member of a cluster of imprinted genes, is expressed from the paternally-inherited chromosome(1,2). Here we...

Descripción completa

Detalles Bibliográficos
Autores principales: Ferrón, Sacri R., Charalambous, Marika, Radford, Elizabeth, McEwen, Kirsten, Wildner, Hendrik, Hind, Eleanor, Morante-Redolat, Jose Manuel, Laborda, Jorge, Guillemot, Francois, Bauer, Steven R., Fariñas, Isabel, Ferguson-Smith, Anne C
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2011
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3160481/
https://www.ncbi.nlm.nih.gov/pubmed/21776083
http://dx.doi.org/10.1038/nature10229
_version_ 1782210562925527040
author Ferrón, Sacri R.
Charalambous, Marika
Radford, Elizabeth
McEwen, Kirsten
Wildner, Hendrik
Hind, Eleanor
Morante-Redolat, Jose Manuel
Laborda, Jorge
Guillemot, Francois
Bauer, Steven R.
Fariñas, Isabel
Ferguson-Smith, Anne C
author_facet Ferrón, Sacri R.
Charalambous, Marika
Radford, Elizabeth
McEwen, Kirsten
Wildner, Hendrik
Hind, Eleanor
Morante-Redolat, Jose Manuel
Laborda, Jorge
Guillemot, Francois
Bauer, Steven R.
Fariñas, Isabel
Ferguson-Smith, Anne C
author_sort Ferrón, Sacri R.
collection PubMed
description The gene for the atypical Notch ligand Delta-like homologue 1 (Dlk1) encodes membrane-bound and secreted isoforms functioning in multiple developmental processes in vitro and in vivo. Dlk1, a member of a cluster of imprinted genes, is expressed from the paternally-inherited chromosome(1,2). Here we show that mice deficient in Dlk1 exhibit defects in postnatal neurogenesis within the subventricular zone (SVZ), a developmental continuum resulting in depletion of mature neurons in the olfactory bulb. We show that DLK1 is a factor secreted by niche-astrocytes, while its membrane-bound isoform is present in neural stem cells (NSCs) being required for the inductive effect of secreted DLK1 on self-renewal. Surprisingly, we find a requirement for Dlk1 expressed from both maternal and paternally inherited chromosomes. Selective absence of Dlk1 imprinting in both NSCs and niche astrocytes is associated with postnatal acquisition of DNA methylation at the germ line-derived imprinting control region (IG-DMR). The results emphasize molecular relationships between NSCs and niche-astrocytes identifying a signalling system coded by a single gene functioning co-ordinately in both cell types. The modulation of genomic imprinting in a stem cell environment adds a new level of epigenetic regulation to the establishment and maintenance of the niche raising wider questions about the adaptability, function, and evolution of imprinting within specific developmental contexts.
format Online
Article
Text
id pubmed-3160481
institution National Center for Biotechnology Information
language English
publishDate 2011
record_format MEDLINE/PubMed
spelling pubmed-31604812012-01-21 Postnatal loss of Dlk1 imprinting in stem cells and niche-astrocytes regulates neurogenesis Ferrón, Sacri R. Charalambous, Marika Radford, Elizabeth McEwen, Kirsten Wildner, Hendrik Hind, Eleanor Morante-Redolat, Jose Manuel Laborda, Jorge Guillemot, Francois Bauer, Steven R. Fariñas, Isabel Ferguson-Smith, Anne C Nature Article The gene for the atypical Notch ligand Delta-like homologue 1 (Dlk1) encodes membrane-bound and secreted isoforms functioning in multiple developmental processes in vitro and in vivo. Dlk1, a member of a cluster of imprinted genes, is expressed from the paternally-inherited chromosome(1,2). Here we show that mice deficient in Dlk1 exhibit defects in postnatal neurogenesis within the subventricular zone (SVZ), a developmental continuum resulting in depletion of mature neurons in the olfactory bulb. We show that DLK1 is a factor secreted by niche-astrocytes, while its membrane-bound isoform is present in neural stem cells (NSCs) being required for the inductive effect of secreted DLK1 on self-renewal. Surprisingly, we find a requirement for Dlk1 expressed from both maternal and paternally inherited chromosomes. Selective absence of Dlk1 imprinting in both NSCs and niche astrocytes is associated with postnatal acquisition of DNA methylation at the germ line-derived imprinting control region (IG-DMR). The results emphasize molecular relationships between NSCs and niche-astrocytes identifying a signalling system coded by a single gene functioning co-ordinately in both cell types. The modulation of genomic imprinting in a stem cell environment adds a new level of epigenetic regulation to the establishment and maintenance of the niche raising wider questions about the adaptability, function, and evolution of imprinting within specific developmental contexts. 2011-07-20 /pmc/articles/PMC3160481/ /pubmed/21776083 http://dx.doi.org/10.1038/nature10229 Text en Users may view, print, copy, download and 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
Ferrón, Sacri R.
Charalambous, Marika
Radford, Elizabeth
McEwen, Kirsten
Wildner, Hendrik
Hind, Eleanor
Morante-Redolat, Jose Manuel
Laborda, Jorge
Guillemot, Francois
Bauer, Steven R.
Fariñas, Isabel
Ferguson-Smith, Anne C
Postnatal loss of Dlk1 imprinting in stem cells and niche-astrocytes regulates neurogenesis
title Postnatal loss of Dlk1 imprinting in stem cells and niche-astrocytes regulates neurogenesis
title_full Postnatal loss of Dlk1 imprinting in stem cells and niche-astrocytes regulates neurogenesis
title_fullStr Postnatal loss of Dlk1 imprinting in stem cells and niche-astrocytes regulates neurogenesis
title_full_unstemmed Postnatal loss of Dlk1 imprinting in stem cells and niche-astrocytes regulates neurogenesis
title_short Postnatal loss of Dlk1 imprinting in stem cells and niche-astrocytes regulates neurogenesis
title_sort postnatal loss of dlk1 imprinting in stem cells and niche-astrocytes regulates neurogenesis
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3160481/
https://www.ncbi.nlm.nih.gov/pubmed/21776083
http://dx.doi.org/10.1038/nature10229
work_keys_str_mv AT ferronsacrir postnatallossofdlk1imprintinginstemcellsandnicheastrocytesregulatesneurogenesis
AT charalambousmarika postnatallossofdlk1imprintinginstemcellsandnicheastrocytesregulatesneurogenesis
AT radfordelizabeth postnatallossofdlk1imprintinginstemcellsandnicheastrocytesregulatesneurogenesis
AT mcewenkirsten postnatallossofdlk1imprintinginstemcellsandnicheastrocytesregulatesneurogenesis
AT wildnerhendrik postnatallossofdlk1imprintinginstemcellsandnicheastrocytesregulatesneurogenesis
AT hindeleanor postnatallossofdlk1imprintinginstemcellsandnicheastrocytesregulatesneurogenesis
AT moranteredolatjosemanuel postnatallossofdlk1imprintinginstemcellsandnicheastrocytesregulatesneurogenesis
AT labordajorge postnatallossofdlk1imprintinginstemcellsandnicheastrocytesregulatesneurogenesis
AT guillemotfrancois postnatallossofdlk1imprintinginstemcellsandnicheastrocytesregulatesneurogenesis
AT bauerstevenr postnatallossofdlk1imprintinginstemcellsandnicheastrocytesregulatesneurogenesis
AT farinasisabel postnatallossofdlk1imprintinginstemcellsandnicheastrocytesregulatesneurogenesis
AT fergusonsmithannec postnatallossofdlk1imprintinginstemcellsandnicheastrocytesregulatesneurogenesis