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A critical role for the chromatin remodeller CHD7 in anterior mesoderm during cardiovascular development

CHARGE syndrome is caused by spontaneous loss-of-function mutations to the ATP-dependant chromatin remodeller chromodomain-helicase-DNA-binding protein 7 (CHD7). It is characterised by a distinct pattern of congenital anomalies, including cardiovascular malformations. Disruption to the neural crest...

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Autores principales: Payne, Sophie, Burney, Matthew J., McCue, Karen, Popal, Nelo, Davidson, Sean M., Anderson, Robert H., Scambler, Peter J.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4534312/
https://www.ncbi.nlm.nih.gov/pubmed/26102480
http://dx.doi.org/10.1016/j.ydbio.2015.06.017
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author Payne, Sophie
Burney, Matthew J.
McCue, Karen
Popal, Nelo
Davidson, Sean M.
Anderson, Robert H.
Scambler, Peter J.
author_facet Payne, Sophie
Burney, Matthew J.
McCue, Karen
Popal, Nelo
Davidson, Sean M.
Anderson, Robert H.
Scambler, Peter J.
author_sort Payne, Sophie
collection PubMed
description CHARGE syndrome is caused by spontaneous loss-of-function mutations to the ATP-dependant chromatin remodeller chromodomain-helicase-DNA-binding protein 7 (CHD7). It is characterised by a distinct pattern of congenital anomalies, including cardiovascular malformations. Disruption to the neural crest lineage has previously been emphasised in the aetiology of this developmental disorder. We present evidence for an additional requirement for CHD7 activity in the Mesp1-expressing anterior mesoderm during heart development. Conditional ablation of Chd7 in this lineage results in major structural cardiovascular defects akin to those seen in CHARGE patients, as well as a striking loss of cardiac innervation and embryonic lethality. Genome-wide transcriptional analysis identified aberrant expression of key components of the Class 3 Semaphorin and Slit–Robo signalling pathways in Chd7(fl/fl);Mesp1-Cre mutant hearts. CHD7 localises at the Sema3c promoter in vivo, with alteration of the local chromatin structure seen following Chd7 ablation, suggestive of direct transcriptional regulation. Furthermore, we uncover a novel role for CHD7 activity upstream of critical calcium handling genes, and demonstrate an associated functional defect in the ability of cardiomyocytes to undergo excitation–contraction coupling. This work therefore reveals the importance of CHD7 in the cardiogenic mesoderm for multiple processes during cardiovascular development.
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spelling pubmed-45343122015-09-01 A critical role for the chromatin remodeller CHD7 in anterior mesoderm during cardiovascular development Payne, Sophie Burney, Matthew J. McCue, Karen Popal, Nelo Davidson, Sean M. Anderson, Robert H. Scambler, Peter J. Dev Biol Article CHARGE syndrome is caused by spontaneous loss-of-function mutations to the ATP-dependant chromatin remodeller chromodomain-helicase-DNA-binding protein 7 (CHD7). It is characterised by a distinct pattern of congenital anomalies, including cardiovascular malformations. Disruption to the neural crest lineage has previously been emphasised in the aetiology of this developmental disorder. We present evidence for an additional requirement for CHD7 activity in the Mesp1-expressing anterior mesoderm during heart development. Conditional ablation of Chd7 in this lineage results in major structural cardiovascular defects akin to those seen in CHARGE patients, as well as a striking loss of cardiac innervation and embryonic lethality. Genome-wide transcriptional analysis identified aberrant expression of key components of the Class 3 Semaphorin and Slit–Robo signalling pathways in Chd7(fl/fl);Mesp1-Cre mutant hearts. CHD7 localises at the Sema3c promoter in vivo, with alteration of the local chromatin structure seen following Chd7 ablation, suggestive of direct transcriptional regulation. Furthermore, we uncover a novel role for CHD7 activity upstream of critical calcium handling genes, and demonstrate an associated functional defect in the ability of cardiomyocytes to undergo excitation–contraction coupling. This work therefore reveals the importance of CHD7 in the cardiogenic mesoderm for multiple processes during cardiovascular development. Elsevier 2015-09-01 /pmc/articles/PMC4534312/ /pubmed/26102480 http://dx.doi.org/10.1016/j.ydbio.2015.06.017 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
Payne, Sophie
Burney, Matthew J.
McCue, Karen
Popal, Nelo
Davidson, Sean M.
Anderson, Robert H.
Scambler, Peter J.
A critical role for the chromatin remodeller CHD7 in anterior mesoderm during cardiovascular development
title A critical role for the chromatin remodeller CHD7 in anterior mesoderm during cardiovascular development
title_full A critical role for the chromatin remodeller CHD7 in anterior mesoderm during cardiovascular development
title_fullStr A critical role for the chromatin remodeller CHD7 in anterior mesoderm during cardiovascular development
title_full_unstemmed A critical role for the chromatin remodeller CHD7 in anterior mesoderm during cardiovascular development
title_short A critical role for the chromatin remodeller CHD7 in anterior mesoderm during cardiovascular development
title_sort critical role for the chromatin remodeller chd7 in anterior mesoderm during cardiovascular development
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4534312/
https://www.ncbi.nlm.nih.gov/pubmed/26102480
http://dx.doi.org/10.1016/j.ydbio.2015.06.017
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