MLL1 is required for PAX7 expression and satellite cell self-renewal in mice
PAX7 transcription factor specifies the myogenic identity of muscle stem cells and acts as a nodal factor by stimulating proliferation while inhibiting differentiation. Here authors find that Mll1 deletion in myoblasts in mice results in reduced H3K4me3 at both Pax7 and Myf5 promoters, reduced Pax7...
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2019-09-01
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Series: | Nature Communications |
Online Access: | https://doi.org/10.1038/s41467-019-12086-9 |
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doaj-8f1a223e30424b10ab115c2947e3f1852021-05-11T11:39:42ZengNature Publishing GroupNature Communications2041-17232019-09-0110111410.1038/s41467-019-12086-9MLL1 is required for PAX7 expression and satellite cell self-renewal in miceGregory C. Addicks0Caroline E. Brun1Marie-Claude Sincennes2John Saber3Christopher J. Porter4A. Francis Stewart5Patricia Ernst6Michael A. Rudnicki7Sprott Centre for Stem Cell Research, Regenerative Medicine Program, Ottawa Hospital Research InstituteSprott Centre for Stem Cell Research, Regenerative Medicine Program, Ottawa Hospital Research InstituteSprott Centre for Stem Cell Research, Regenerative Medicine Program, Ottawa Hospital Research InstituteSprott Centre for Stem Cell Research, Regenerative Medicine Program, Ottawa Hospital Research InstituteSprott Centre for Stem Cell Research, Ottawa Bioinformatics Core Facility, Ottawa Hospital Research InstituteGenomics, Center for Molecular and Cellular Bioengineering, Technische Universität DresdenDepartment of Pediatrics and Pharmacology, University of Colorado/Anschutz Medical CampusSprott Centre for Stem Cell Research, Regenerative Medicine Program, Ottawa Hospital Research InstitutePAX7 transcription factor specifies the myogenic identity of muscle stem cells and acts as a nodal factor by stimulating proliferation while inhibiting differentiation. Here authors find that Mll1 deletion in myoblasts in mice results in reduced H3K4me3 at both Pax7 and Myf5 promoters, reduced Pax7 and Myf5 expression, and proliferation defects.https://doi.org/10.1038/s41467-019-12086-9 |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Gregory C. Addicks Caroline E. Brun Marie-Claude Sincennes John Saber Christopher J. Porter A. Francis Stewart Patricia Ernst Michael A. Rudnicki |
spellingShingle |
Gregory C. Addicks Caroline E. Brun Marie-Claude Sincennes John Saber Christopher J. Porter A. Francis Stewart Patricia Ernst Michael A. Rudnicki MLL1 is required for PAX7 expression and satellite cell self-renewal in mice Nature Communications |
author_facet |
Gregory C. Addicks Caroline E. Brun Marie-Claude Sincennes John Saber Christopher J. Porter A. Francis Stewart Patricia Ernst Michael A. Rudnicki |
author_sort |
Gregory C. Addicks |
title |
MLL1 is required for PAX7 expression and satellite cell self-renewal in mice |
title_short |
MLL1 is required for PAX7 expression and satellite cell self-renewal in mice |
title_full |
MLL1 is required for PAX7 expression and satellite cell self-renewal in mice |
title_fullStr |
MLL1 is required for PAX7 expression and satellite cell self-renewal in mice |
title_full_unstemmed |
MLL1 is required for PAX7 expression and satellite cell self-renewal in mice |
title_sort |
mll1 is required for pax7 expression and satellite cell self-renewal in mice |
publisher |
Nature Publishing Group |
series |
Nature Communications |
issn |
2041-1723 |
publishDate |
2019-09-01 |
description |
PAX7 transcription factor specifies the myogenic identity of muscle stem cells and acts as a nodal factor by stimulating proliferation while inhibiting differentiation. Here authors find that Mll1 deletion in myoblasts in mice results in reduced H3K4me3 at both Pax7 and Myf5 promoters, reduced Pax7 and Myf5 expression, and proliferation defects. |
url |
https://doi.org/10.1038/s41467-019-12086-9 |
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