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Evaluation of the Genetic Basis of Familial Aggregation of Pacemaker Implantation by a Large Next Generation Sequencing Panel

BACKGROUND: The etiology of conduction disturbances necessitating permanent pacemaker (PPM) implantation is often unknown, although familial aggregation of PPM (faPPM) suggests a possible genetic basis. We developed a pan-cardiovascular next generation sequencing (NGS) panel to genetically character...

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Autores principales: Celestino-Soper, Patrícia B. S., Doytchinova, Anisiia, Steiner, Hillel A., Uradu, Andrea, Lynnes, Ty C., Groh, William J., Miller, John M., Lin, Hai, Gao, Hongyu, Wang, Zhiping, Liu, Yunlong, Chen, Peng-Sheng, Vatta, Matteo
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4670209/
https://www.ncbi.nlm.nih.gov/pubmed/26636822
http://dx.doi.org/10.1371/journal.pone.0143588
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author Celestino-Soper, Patrícia B. S.
Doytchinova, Anisiia
Steiner, Hillel A.
Uradu, Andrea
Lynnes, Ty C.
Groh, William J.
Miller, John M.
Lin, Hai
Gao, Hongyu
Wang, Zhiping
Liu, Yunlong
Chen, Peng-Sheng
Vatta, Matteo
author_facet Celestino-Soper, Patrícia B. S.
Doytchinova, Anisiia
Steiner, Hillel A.
Uradu, Andrea
Lynnes, Ty C.
Groh, William J.
Miller, John M.
Lin, Hai
Gao, Hongyu
Wang, Zhiping
Liu, Yunlong
Chen, Peng-Sheng
Vatta, Matteo
author_sort Celestino-Soper, Patrícia B. S.
collection PubMed
description BACKGROUND: The etiology of conduction disturbances necessitating permanent pacemaker (PPM) implantation is often unknown, although familial aggregation of PPM (faPPM) suggests a possible genetic basis. We developed a pan-cardiovascular next generation sequencing (NGS) panel to genetically characterize a selected cohort of faPPM. MATERIALS AND METHODS: We designed and validated a custom NGS panel targeting the coding and splicing regions of 246 genes with involvement in cardiac pathogenicity. We enrolled 112 PPM patients and selected nine (8%) with faPPM to be analyzed by NGS. RESULTS: Our NGS panel covers 95% of the intended target with an average of 229x read depth at a minimum of 15-fold depth, reaching a SNP true positive rate of 98%. The faPPM patients presented with isolated cardiac conduction disease (ICCD) or sick sinus syndrome (SSS) without overt structural heart disease or identifiable secondary etiology. Three patients (33.3%) had heterozygous deleterious variants previously reported in autosomal dominant cardiac diseases including CCD: LDB3 (p.D117N) and TRPM4 (p.G844D) variants in patient 4; TRPM4 (p.G844D) and ABCC9 (p.V734I) variants in patient 6; and SCN5A (p.T220I) and APOB (p.R3527Q) variants in patient 7. CONCLUSION: FaPPM occurred in 8% of our PPM clinic population. The employment of massive parallel sequencing for a large selected panel of cardiovascular genes identified a high percentage (33.3%) of the faPPM patients with deleterious variants previously reported in autosomal dominant cardiac diseases, suggesting that genetic variants may play a role in faPPM.
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spelling pubmed-46702092015-12-10 Evaluation of the Genetic Basis of Familial Aggregation of Pacemaker Implantation by a Large Next Generation Sequencing Panel Celestino-Soper, Patrícia B. S. Doytchinova, Anisiia Steiner, Hillel A. Uradu, Andrea Lynnes, Ty C. Groh, William J. Miller, John M. Lin, Hai Gao, Hongyu Wang, Zhiping Liu, Yunlong Chen, Peng-Sheng Vatta, Matteo PLoS One Research Article BACKGROUND: The etiology of conduction disturbances necessitating permanent pacemaker (PPM) implantation is often unknown, although familial aggregation of PPM (faPPM) suggests a possible genetic basis. We developed a pan-cardiovascular next generation sequencing (NGS) panel to genetically characterize a selected cohort of faPPM. MATERIALS AND METHODS: We designed and validated a custom NGS panel targeting the coding and splicing regions of 246 genes with involvement in cardiac pathogenicity. We enrolled 112 PPM patients and selected nine (8%) with faPPM to be analyzed by NGS. RESULTS: Our NGS panel covers 95% of the intended target with an average of 229x read depth at a minimum of 15-fold depth, reaching a SNP true positive rate of 98%. The faPPM patients presented with isolated cardiac conduction disease (ICCD) or sick sinus syndrome (SSS) without overt structural heart disease or identifiable secondary etiology. Three patients (33.3%) had heterozygous deleterious variants previously reported in autosomal dominant cardiac diseases including CCD: LDB3 (p.D117N) and TRPM4 (p.G844D) variants in patient 4; TRPM4 (p.G844D) and ABCC9 (p.V734I) variants in patient 6; and SCN5A (p.T220I) and APOB (p.R3527Q) variants in patient 7. CONCLUSION: FaPPM occurred in 8% of our PPM clinic population. The employment of massive parallel sequencing for a large selected panel of cardiovascular genes identified a high percentage (33.3%) of the faPPM patients with deleterious variants previously reported in autosomal dominant cardiac diseases, suggesting that genetic variants may play a role in faPPM. Public Library of Science 2015-12-04 /pmc/articles/PMC4670209/ /pubmed/26636822 http://dx.doi.org/10.1371/journal.pone.0143588 Text en © 2015 Celestino-Soper et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Celestino-Soper, Patrícia B. S.
Doytchinova, Anisiia
Steiner, Hillel A.
Uradu, Andrea
Lynnes, Ty C.
Groh, William J.
Miller, John M.
Lin, Hai
Gao, Hongyu
Wang, Zhiping
Liu, Yunlong
Chen, Peng-Sheng
Vatta, Matteo
Evaluation of the Genetic Basis of Familial Aggregation of Pacemaker Implantation by a Large Next Generation Sequencing Panel
title Evaluation of the Genetic Basis of Familial Aggregation of Pacemaker Implantation by a Large Next Generation Sequencing Panel
title_full Evaluation of the Genetic Basis of Familial Aggregation of Pacemaker Implantation by a Large Next Generation Sequencing Panel
title_fullStr Evaluation of the Genetic Basis of Familial Aggregation of Pacemaker Implantation by a Large Next Generation Sequencing Panel
title_full_unstemmed Evaluation of the Genetic Basis of Familial Aggregation of Pacemaker Implantation by a Large Next Generation Sequencing Panel
title_short Evaluation of the Genetic Basis of Familial Aggregation of Pacemaker Implantation by a Large Next Generation Sequencing Panel
title_sort evaluation of the genetic basis of familial aggregation of pacemaker implantation by a large next generation sequencing panel
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4670209/
https://www.ncbi.nlm.nih.gov/pubmed/26636822
http://dx.doi.org/10.1371/journal.pone.0143588
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