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Genetic Variants in Isolated Ebstein Anomaly Implicated in Myocardial Development Pathways

Ebstein anomaly (EA) is a rare heart defect in which the tricuspid valve is malformed and displaced. The tricuspid valve abnormalities can lead to backflow of blood from the right ventricle to the right atrium, preventing proper circulation of blood to the lungs. Although the etiology of EA is large...

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Autores principales: Sicko, Robert J., Browne, Marilyn L., Rigler, Shannon L., Druschel, Charlotte M., Liu, Gang, Fan, Ruzong, Romitti, Paul A., Caggana, Michele, Kay, Denise M., Brody, Lawrence C., Mills, James L.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5082909/
https://www.ncbi.nlm.nih.gov/pubmed/27788187
http://dx.doi.org/10.1371/journal.pone.0165174
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author Sicko, Robert J.
Browne, Marilyn L.
Rigler, Shannon L.
Druschel, Charlotte M.
Liu, Gang
Fan, Ruzong
Romitti, Paul A.
Caggana, Michele
Kay, Denise M.
Brody, Lawrence C.
Mills, James L.
author_facet Sicko, Robert J.
Browne, Marilyn L.
Rigler, Shannon L.
Druschel, Charlotte M.
Liu, Gang
Fan, Ruzong
Romitti, Paul A.
Caggana, Michele
Kay, Denise M.
Brody, Lawrence C.
Mills, James L.
author_sort Sicko, Robert J.
collection PubMed
description Ebstein anomaly (EA) is a rare heart defect in which the tricuspid valve is malformed and displaced. The tricuspid valve abnormalities can lead to backflow of blood from the right ventricle to the right atrium, preventing proper circulation of blood to the lungs. Although the etiology of EA is largely unresolved, increased prevalence of EA in those with a family history of congenital heart disease suggests EA has a genetic component. Copy number variants (CNVs) are a major source of genetic variation and have been implicated in a range of congenital heart defect phenotypes. We performed a systematic, genome-wide search for CNVs in 47 isolated EA cases using genotyping microarrays. In addition, we used a custom HaloPlex panel to sequence three known EA genes and 47 candidate EA genes. We identified 35 candidate CNVs in 24 (51%) EA cases. Rare sequence variants in genes associated with cardiomyopathy were identified in 11 (23%) EA cases. Two CNVs near the transcriptional repressor HEY1, a member of the NOTCH signaling pathway, were identified in three unrelated cases. All other candidate CNVs were each identified in a single case. At least 11 of 35 candidate CNVs include genes involved in myocardial development or function, including multiple genes in the BMP signaling pathway. We identified enrichment of gene sets involved in histone modification and cardiomyocyte differentiation, supporting the involvement of the developing myocardium in the etiology of EA. Gene set enrichment analysis also identified ribosomal RNA processing, a potentially novel pathway of altered cardiac development in EA. Our results suggest an altered myocardial program may contribute to abnormal tricuspid valve development in EA. Future studies should investigate abnormal differentiation of cardiomyocytes as a potential etiological factor in EA.
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spelling pubmed-50829092016-11-04 Genetic Variants in Isolated Ebstein Anomaly Implicated in Myocardial Development Pathways Sicko, Robert J. Browne, Marilyn L. Rigler, Shannon L. Druschel, Charlotte M. Liu, Gang Fan, Ruzong Romitti, Paul A. Caggana, Michele Kay, Denise M. Brody, Lawrence C. Mills, James L. PLoS One Research Article Ebstein anomaly (EA) is a rare heart defect in which the tricuspid valve is malformed and displaced. The tricuspid valve abnormalities can lead to backflow of blood from the right ventricle to the right atrium, preventing proper circulation of blood to the lungs. Although the etiology of EA is largely unresolved, increased prevalence of EA in those with a family history of congenital heart disease suggests EA has a genetic component. Copy number variants (CNVs) are a major source of genetic variation and have been implicated in a range of congenital heart defect phenotypes. We performed a systematic, genome-wide search for CNVs in 47 isolated EA cases using genotyping microarrays. In addition, we used a custom HaloPlex panel to sequence three known EA genes and 47 candidate EA genes. We identified 35 candidate CNVs in 24 (51%) EA cases. Rare sequence variants in genes associated with cardiomyopathy were identified in 11 (23%) EA cases. Two CNVs near the transcriptional repressor HEY1, a member of the NOTCH signaling pathway, were identified in three unrelated cases. All other candidate CNVs were each identified in a single case. At least 11 of 35 candidate CNVs include genes involved in myocardial development or function, including multiple genes in the BMP signaling pathway. We identified enrichment of gene sets involved in histone modification and cardiomyocyte differentiation, supporting the involvement of the developing myocardium in the etiology of EA. Gene set enrichment analysis also identified ribosomal RNA processing, a potentially novel pathway of altered cardiac development in EA. Our results suggest an altered myocardial program may contribute to abnormal tricuspid valve development in EA. Future studies should investigate abnormal differentiation of cardiomyocytes as a potential etiological factor in EA. Public Library of Science 2016-10-27 /pmc/articles/PMC5082909/ /pubmed/27788187 http://dx.doi.org/10.1371/journal.pone.0165174 Text en https://creativecommons.org/publicdomain/zero/1.0/ This is an open access article, free of all copyright, and may be freely reproduced, distributed, transmitted, modified, built upon, or otherwise used by anyone for any lawful purpose. The work is made available under the Creative Commons CC0 (https://creativecommons.org/publicdomain/zero/1.0/) public domain dedication.
spellingShingle Research Article
Sicko, Robert J.
Browne, Marilyn L.
Rigler, Shannon L.
Druschel, Charlotte M.
Liu, Gang
Fan, Ruzong
Romitti, Paul A.
Caggana, Michele
Kay, Denise M.
Brody, Lawrence C.
Mills, James L.
Genetic Variants in Isolated Ebstein Anomaly Implicated in Myocardial Development Pathways
title Genetic Variants in Isolated Ebstein Anomaly Implicated in Myocardial Development Pathways
title_full Genetic Variants in Isolated Ebstein Anomaly Implicated in Myocardial Development Pathways
title_fullStr Genetic Variants in Isolated Ebstein Anomaly Implicated in Myocardial Development Pathways
title_full_unstemmed Genetic Variants in Isolated Ebstein Anomaly Implicated in Myocardial Development Pathways
title_short Genetic Variants in Isolated Ebstein Anomaly Implicated in Myocardial Development Pathways
title_sort genetic variants in isolated ebstein anomaly implicated in myocardial development pathways
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5082909/
https://www.ncbi.nlm.nih.gov/pubmed/27788187
http://dx.doi.org/10.1371/journal.pone.0165174
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