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Impact of MYH6 variants in hypoplastic left heart syndrome

Hypoplastic left heart syndrome (HLHS) is a clinically and anatomically severe form of congenital heart disease (CHD). Although prior studies suggest that HLHS has a complex genetic inheritance, its etiology remains largely unknown. The goal of this study was to characterize a risk gene in HLHS and...

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Autores principales: Tomita-Mitchell, Aoy, Stamm, Karl D., Mahnke, Donna K., Kim, Min-Su, Hidestrand, Pip M., Liang, Huan Ling, Goetsch, Mary A., Hidestrand, Mats, Simpson, Pippa, Pelech, Andrew N., Tweddell, James S., Benson, D. Woodrow, Lough, John W., Mitchell, Michael E.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Physiological Society 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5206387/
https://www.ncbi.nlm.nih.gov/pubmed/27789736
http://dx.doi.org/10.1152/physiolgenomics.00091.2016
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author Tomita-Mitchell, Aoy
Stamm, Karl D.
Mahnke, Donna K.
Kim, Min-Su
Hidestrand, Pip M.
Liang, Huan Ling
Goetsch, Mary A.
Hidestrand, Mats
Simpson, Pippa
Pelech, Andrew N.
Tweddell, James S.
Benson, D. Woodrow
Lough, John W.
Mitchell, Michael E.
author_facet Tomita-Mitchell, Aoy
Stamm, Karl D.
Mahnke, Donna K.
Kim, Min-Su
Hidestrand, Pip M.
Liang, Huan Ling
Goetsch, Mary A.
Hidestrand, Mats
Simpson, Pippa
Pelech, Andrew N.
Tweddell, James S.
Benson, D. Woodrow
Lough, John W.
Mitchell, Michael E.
author_sort Tomita-Mitchell, Aoy
collection PubMed
description Hypoplastic left heart syndrome (HLHS) is a clinically and anatomically severe form of congenital heart disease (CHD). Although prior studies suggest that HLHS has a complex genetic inheritance, its etiology remains largely unknown. The goal of this study was to characterize a risk gene in HLHS and its effect on HLHS etiology and outcome. We performed next-generation sequencing on a multigenerational family with a high prevalence of CHD/HLHS, identifying a rare variant in the α-myosin heavy chain (MYH6) gene. A case-control study of 190 unrelated HLHS subjects was then performed and compared with the 1000 Genomes Project. Damaging MYH6 variants, including novel, missense, in-frame deletion, premature stop, de novo, and compound heterozygous variants, were significantly enriched in HLHS cases (P < 1 × 10(−5)). Clinical outcomes analysis showed reduced transplant-free survival in HLHS subjects with damaging MYH6 variants (P < 1 × 10(−2)). Transcriptome and protein expression analyses with cardiac tissue revealed differential expression of cardiac contractility genes, notably upregulation of the β-myosin heavy chain (MYH7) gene in subjects with MYH6 variants (P < 1 × 10(−3)). We subsequently used patient-specific induced pluripotent stem cells (iPSCs) to model HLHS in vitro. Early stages of in vitro cardiomyogenesis in iPSCs derived from two unrelated HLHS families mimicked the increased expression of MYH7 observed in vivo (P < 1 × 10(−2)), while revealing defective cardiomyogenic differentiation. Rare, damaging variants in MYH6 are enriched in HLHS, affect molecular expression of contractility genes, and are predictive of poor outcome. These findings indicate that the etiology of MYH6-associated HLHS can be informed using iPSCs and suggest utility in future clinical applications.
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spelling pubmed-52063872017-11-01 Impact of MYH6 variants in hypoplastic left heart syndrome Tomita-Mitchell, Aoy Stamm, Karl D. Mahnke, Donna K. Kim, Min-Su Hidestrand, Pip M. Liang, Huan Ling Goetsch, Mary A. Hidestrand, Mats Simpson, Pippa Pelech, Andrew N. Tweddell, James S. Benson, D. Woodrow Lough, John W. Mitchell, Michael E. Physiol Genomics Genomic and “Polyomic” Studies of Cardiovascular and Inflammatory Diseases Hypoplastic left heart syndrome (HLHS) is a clinically and anatomically severe form of congenital heart disease (CHD). Although prior studies suggest that HLHS has a complex genetic inheritance, its etiology remains largely unknown. The goal of this study was to characterize a risk gene in HLHS and its effect on HLHS etiology and outcome. We performed next-generation sequencing on a multigenerational family with a high prevalence of CHD/HLHS, identifying a rare variant in the α-myosin heavy chain (MYH6) gene. A case-control study of 190 unrelated HLHS subjects was then performed and compared with the 1000 Genomes Project. Damaging MYH6 variants, including novel, missense, in-frame deletion, premature stop, de novo, and compound heterozygous variants, were significantly enriched in HLHS cases (P < 1 × 10(−5)). Clinical outcomes analysis showed reduced transplant-free survival in HLHS subjects with damaging MYH6 variants (P < 1 × 10(−2)). Transcriptome and protein expression analyses with cardiac tissue revealed differential expression of cardiac contractility genes, notably upregulation of the β-myosin heavy chain (MYH7) gene in subjects with MYH6 variants (P < 1 × 10(−3)). We subsequently used patient-specific induced pluripotent stem cells (iPSCs) to model HLHS in vitro. Early stages of in vitro cardiomyogenesis in iPSCs derived from two unrelated HLHS families mimicked the increased expression of MYH7 observed in vivo (P < 1 × 10(−2)), while revealing defective cardiomyogenic differentiation. Rare, damaging variants in MYH6 are enriched in HLHS, affect molecular expression of contractility genes, and are predictive of poor outcome. These findings indicate that the etiology of MYH6-associated HLHS can be informed using iPSCs and suggest utility in future clinical applications. American Physiological Society 2016-10-27 2016-12-01 /pmc/articles/PMC5206387/ /pubmed/27789736 http://dx.doi.org/10.1152/physiolgenomics.00091.2016 Text en Copyright © 2016 the American Physiological Society http://creativecommons.org/licenses/by/4.0/deed.en_US Licensed under Creative Commons Attribution CC-BY 4.0 (http://creativecommons.org/licenses/by/4.0/deed.en_US) : © the American Physiological Society.
spellingShingle Genomic and “Polyomic” Studies of Cardiovascular and Inflammatory Diseases
Tomita-Mitchell, Aoy
Stamm, Karl D.
Mahnke, Donna K.
Kim, Min-Su
Hidestrand, Pip M.
Liang, Huan Ling
Goetsch, Mary A.
Hidestrand, Mats
Simpson, Pippa
Pelech, Andrew N.
Tweddell, James S.
Benson, D. Woodrow
Lough, John W.
Mitchell, Michael E.
Impact of MYH6 variants in hypoplastic left heart syndrome
title Impact of MYH6 variants in hypoplastic left heart syndrome
title_full Impact of MYH6 variants in hypoplastic left heart syndrome
title_fullStr Impact of MYH6 variants in hypoplastic left heart syndrome
title_full_unstemmed Impact of MYH6 variants in hypoplastic left heart syndrome
title_short Impact of MYH6 variants in hypoplastic left heart syndrome
title_sort impact of myh6 variants in hypoplastic left heart syndrome
topic Genomic and “Polyomic” Studies of Cardiovascular and Inflammatory Diseases
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5206387/
https://www.ncbi.nlm.nih.gov/pubmed/27789736
http://dx.doi.org/10.1152/physiolgenomics.00091.2016
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