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Computational estimates of annular diameter reveal genetic determinants of mitral valve function and disease

The fibrous annulus of the mitral valve plays an important role in valvular function and cardiac physiology, while normal variation in the size of cardiovascular anatomy may share a genetic link with common and rare disease. We derived automated estimates of mitral valve annular diameter in the 4-ch...

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Autores principales: Yu, Mengyao, Tcheandjieu, Catherine, Georges, Adrien, Xiao, Ke, Tejeda, Helio, Dina, Christian, Le Tourneau, Thierry, Fiterau, Madalina, Judy, Renae, Tsao, Noah L., Amgalan, Dulguun, Munger, Chad J., Engreitz, Jesse M., Damrauer, Scott M., Bouatia-Naji, Nabila, Priest, James R.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Clinical Investigation 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8855800/
https://www.ncbi.nlm.nih.gov/pubmed/35132965
http://dx.doi.org/10.1172/jci.insight.146580
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author Yu, Mengyao
Tcheandjieu, Catherine
Georges, Adrien
Xiao, Ke
Tejeda, Helio
Dina, Christian
Le Tourneau, Thierry
Fiterau, Madalina
Judy, Renae
Tsao, Noah L.
Amgalan, Dulguun
Munger, Chad J.
Engreitz, Jesse M.
Damrauer, Scott M.
Bouatia-Naji, Nabila
Priest, James R.
author_facet Yu, Mengyao
Tcheandjieu, Catherine
Georges, Adrien
Xiao, Ke
Tejeda, Helio
Dina, Christian
Le Tourneau, Thierry
Fiterau, Madalina
Judy, Renae
Tsao, Noah L.
Amgalan, Dulguun
Munger, Chad J.
Engreitz, Jesse M.
Damrauer, Scott M.
Bouatia-Naji, Nabila
Priest, James R.
author_sort Yu, Mengyao
collection PubMed
description The fibrous annulus of the mitral valve plays an important role in valvular function and cardiac physiology, while normal variation in the size of cardiovascular anatomy may share a genetic link with common and rare disease. We derived automated estimates of mitral valve annular diameter in the 4-chamber view from 32,220 MRI images from the UK Biobank at ventricular systole and diastole as the basis for GWAS. Mitral annular dimensions corresponded to previously described anatomical norms, and GWAS inclusive of 4 population strata identified 10 loci, including possibly novel loci (GOSR2, ERBB4, MCTP2, MCPH1) and genes related to cardiac contractility (BAG3, TTN, RBFOX1). ATAC-Seq of primary mitral valve tissue localized multiple variants to regions of open chromatin in biologically relevant cell types and rs17608766 to an algorithmically predicted enhancer element in GOSR2. We observed strong genetic correlation with measures of contractility and mitral valve disease and clinical correlations with heart failure, cerebrovascular disease, and ventricular arrhythmias. Polygenic scoring of mitral valve annular diameter in systole was predictive of risk mitral valve prolapse across 4 cohorts. In summary, genetic and clinical studies of mitral valve annular diameter revealed genetic determinants of mitral valve biology, while highlighting clinical associations. Polygenic determinants of mitral valve annular diameter may represent an independent risk factor for mitral prolapse. Overall, computationally estimated phenotypes derived at scale from medical imaging represent an important substrate for genetic discovery and clinical risk prediction.
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spelling pubmed-88558002022-02-22 Computational estimates of annular diameter reveal genetic determinants of mitral valve function and disease Yu, Mengyao Tcheandjieu, Catherine Georges, Adrien Xiao, Ke Tejeda, Helio Dina, Christian Le Tourneau, Thierry Fiterau, Madalina Judy, Renae Tsao, Noah L. Amgalan, Dulguun Munger, Chad J. Engreitz, Jesse M. Damrauer, Scott M. Bouatia-Naji, Nabila Priest, James R. JCI Insight Research Article The fibrous annulus of the mitral valve plays an important role in valvular function and cardiac physiology, while normal variation in the size of cardiovascular anatomy may share a genetic link with common and rare disease. We derived automated estimates of mitral valve annular diameter in the 4-chamber view from 32,220 MRI images from the UK Biobank at ventricular systole and diastole as the basis for GWAS. Mitral annular dimensions corresponded to previously described anatomical norms, and GWAS inclusive of 4 population strata identified 10 loci, including possibly novel loci (GOSR2, ERBB4, MCTP2, MCPH1) and genes related to cardiac contractility (BAG3, TTN, RBFOX1). ATAC-Seq of primary mitral valve tissue localized multiple variants to regions of open chromatin in biologically relevant cell types and rs17608766 to an algorithmically predicted enhancer element in GOSR2. We observed strong genetic correlation with measures of contractility and mitral valve disease and clinical correlations with heart failure, cerebrovascular disease, and ventricular arrhythmias. Polygenic scoring of mitral valve annular diameter in systole was predictive of risk mitral valve prolapse across 4 cohorts. In summary, genetic and clinical studies of mitral valve annular diameter revealed genetic determinants of mitral valve biology, while highlighting clinical associations. Polygenic determinants of mitral valve annular diameter may represent an independent risk factor for mitral prolapse. Overall, computationally estimated phenotypes derived at scale from medical imaging represent an important substrate for genetic discovery and clinical risk prediction. American Society for Clinical Investigation 2022-02-08 /pmc/articles/PMC8855800/ /pubmed/35132965 http://dx.doi.org/10.1172/jci.insight.146580 Text en © 2022 Yu et al. https://creativecommons.org/licenses/by/4.0/This work is licensed under the Creative Commons Attribution 4.0 International License. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) .
spellingShingle Research Article
Yu, Mengyao
Tcheandjieu, Catherine
Georges, Adrien
Xiao, Ke
Tejeda, Helio
Dina, Christian
Le Tourneau, Thierry
Fiterau, Madalina
Judy, Renae
Tsao, Noah L.
Amgalan, Dulguun
Munger, Chad J.
Engreitz, Jesse M.
Damrauer, Scott M.
Bouatia-Naji, Nabila
Priest, James R.
Computational estimates of annular diameter reveal genetic determinants of mitral valve function and disease
title Computational estimates of annular diameter reveal genetic determinants of mitral valve function and disease
title_full Computational estimates of annular diameter reveal genetic determinants of mitral valve function and disease
title_fullStr Computational estimates of annular diameter reveal genetic determinants of mitral valve function and disease
title_full_unstemmed Computational estimates of annular diameter reveal genetic determinants of mitral valve function and disease
title_short Computational estimates of annular diameter reveal genetic determinants of mitral valve function and disease
title_sort computational estimates of annular diameter reveal genetic determinants of mitral valve function and disease
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8855800/
https://www.ncbi.nlm.nih.gov/pubmed/35132965
http://dx.doi.org/10.1172/jci.insight.146580
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