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The arginine methyltransferase Carm1 is necessary for heart development

To discover genes implicated in human congenital disorders, we performed ENU mutagenesis in the mouse and screened for mutations affecting embryonic development. In this work, we report defects of heart development in mice homozygous for a mutation of coactivator-associated arginine methyltransferas...

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Autores principales: Jamet, Sophie, Ha, Seungshin, Ho, Tzu-Hua, Houghtaling, Scott, Timms, Andrew, Yu, Kai, Paquette, Alison, Maga, Ali Murat, Greene, Nicholas D E, Beier, David R
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9339313/
https://www.ncbi.nlm.nih.gov/pubmed/35736367
http://dx.doi.org/10.1093/g3journal/jkac155
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author Jamet, Sophie
Ha, Seungshin
Ho, Tzu-Hua
Houghtaling, Scott
Timms, Andrew
Yu, Kai
Paquette, Alison
Maga, Ali Murat
Greene, Nicholas D E
Beier, David R
author_facet Jamet, Sophie
Ha, Seungshin
Ho, Tzu-Hua
Houghtaling, Scott
Timms, Andrew
Yu, Kai
Paquette, Alison
Maga, Ali Murat
Greene, Nicholas D E
Beier, David R
author_sort Jamet, Sophie
collection PubMed
description To discover genes implicated in human congenital disorders, we performed ENU mutagenesis in the mouse and screened for mutations affecting embryonic development. In this work, we report defects of heart development in mice homozygous for a mutation of coactivator-associated arginine methyltransferase 1 (Carm1). While Carm1 has been extensively studied, it has never been previously associated with a role in heart development. Phenotype analysis combining histology and microcomputed tomography imaging shows a range of cardiac defects. Most notably, many affected midgestation embryos appear to have cardiac rupture and hemorrhaging in the thorax. Mice that survive to late gestation show a variety of cardiac defects, including ventricular septal defects, double outlet right ventricle, and persistent truncus arteriosus. Transcriptome analyses of the mutant embryos by mRNA-seq reveal the perturbation of several genes involved in cardiac morphogenesis and muscle development and function. In addition, we observe the mislocalization of cardiac neural crest cells at E12.5 in the outflow tract. The cardiac phenotype of Carm1 mutant embryos is similar to that of Pax3 null mutants, and PAX3 is a putative target of CARM1. However, our analysis does not support the hypothesis that developmental defects in Carm1 mutant embryos are primarily due to a functional defect of PAX3.
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spelling pubmed-93393132022-08-01 The arginine methyltransferase Carm1 is necessary for heart development Jamet, Sophie Ha, Seungshin Ho, Tzu-Hua Houghtaling, Scott Timms, Andrew Yu, Kai Paquette, Alison Maga, Ali Murat Greene, Nicholas D E Beier, David R G3 (Bethesda) Investigation To discover genes implicated in human congenital disorders, we performed ENU mutagenesis in the mouse and screened for mutations affecting embryonic development. In this work, we report defects of heart development in mice homozygous for a mutation of coactivator-associated arginine methyltransferase 1 (Carm1). While Carm1 has been extensively studied, it has never been previously associated with a role in heart development. Phenotype analysis combining histology and microcomputed tomography imaging shows a range of cardiac defects. Most notably, many affected midgestation embryos appear to have cardiac rupture and hemorrhaging in the thorax. Mice that survive to late gestation show a variety of cardiac defects, including ventricular septal defects, double outlet right ventricle, and persistent truncus arteriosus. Transcriptome analyses of the mutant embryos by mRNA-seq reveal the perturbation of several genes involved in cardiac morphogenesis and muscle development and function. In addition, we observe the mislocalization of cardiac neural crest cells at E12.5 in the outflow tract. The cardiac phenotype of Carm1 mutant embryos is similar to that of Pax3 null mutants, and PAX3 is a putative target of CARM1. However, our analysis does not support the hypothesis that developmental defects in Carm1 mutant embryos are primarily due to a functional defect of PAX3. Oxford University Press 2022-06-23 /pmc/articles/PMC9339313/ /pubmed/35736367 http://dx.doi.org/10.1093/g3journal/jkac155 Text en © The Author(s) 2022. Published by Oxford University Press on behalf of Genetics Society of America. https://creativecommons.org/licenses/by/4.0/This is an Open Access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/), which permits unrestricted reuse, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Investigation
Jamet, Sophie
Ha, Seungshin
Ho, Tzu-Hua
Houghtaling, Scott
Timms, Andrew
Yu, Kai
Paquette, Alison
Maga, Ali Murat
Greene, Nicholas D E
Beier, David R
The arginine methyltransferase Carm1 is necessary for heart development
title The arginine methyltransferase Carm1 is necessary for heart development
title_full The arginine methyltransferase Carm1 is necessary for heart development
title_fullStr The arginine methyltransferase Carm1 is necessary for heart development
title_full_unstemmed The arginine methyltransferase Carm1 is necessary for heart development
title_short The arginine methyltransferase Carm1 is necessary for heart development
title_sort arginine methyltransferase carm1 is necessary for heart development
topic Investigation
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9339313/
https://www.ncbi.nlm.nih.gov/pubmed/35736367
http://dx.doi.org/10.1093/g3journal/jkac155
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