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Exome Analyses of Long QT Syndrome Reveal Candidate Pathogenic Mutations in Calmodulin-Interacting Genes

Long QT syndrome (LQTS) is an arrhythmogenic disorder that can lead to sudden death. To date, mutations in 15 LQTS-susceptibility genes have been implicated. However, the genetic cause for approximately 20% of LQTS patients remains elusive. Here, we performed whole-exome sequencing analyses on 59 LQ...

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Autores principales: Shigemizu, Daichi, Aiba, Takeshi, Nakagawa, Hidewaki, Ozaki, Kouichi, Miya, Fuyuki, Satake, Wataru, Toda, Tatsushi, Miyamoto, Yoshihiro, Fujimoto, Akihiro, Suzuki, Yutaka, Kubo, Michiaki, Tsunoda, Tatsuhiko, Shimizu, Wataru, Tanaka, Toshihiro
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4488844/
https://www.ncbi.nlm.nih.gov/pubmed/26132555
http://dx.doi.org/10.1371/journal.pone.0130329
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author Shigemizu, Daichi
Aiba, Takeshi
Nakagawa, Hidewaki
Ozaki, Kouichi
Miya, Fuyuki
Satake, Wataru
Toda, Tatsushi
Miyamoto, Yoshihiro
Fujimoto, Akihiro
Suzuki, Yutaka
Kubo, Michiaki
Tsunoda, Tatsuhiko
Shimizu, Wataru
Tanaka, Toshihiro
author_facet Shigemizu, Daichi
Aiba, Takeshi
Nakagawa, Hidewaki
Ozaki, Kouichi
Miya, Fuyuki
Satake, Wataru
Toda, Tatsushi
Miyamoto, Yoshihiro
Fujimoto, Akihiro
Suzuki, Yutaka
Kubo, Michiaki
Tsunoda, Tatsuhiko
Shimizu, Wataru
Tanaka, Toshihiro
author_sort Shigemizu, Daichi
collection PubMed
description Long QT syndrome (LQTS) is an arrhythmogenic disorder that can lead to sudden death. To date, mutations in 15 LQTS-susceptibility genes have been implicated. However, the genetic cause for approximately 20% of LQTS patients remains elusive. Here, we performed whole-exome sequencing analyses on 59 LQTS and 61 unaffected individuals in 35 families and 138 unrelated LQTS cases, after genetic screening of known LQTS genes. Our systematic analysis of familial cases and subsequent verification by Sanger sequencing identified 92 candidate mutations in 88 genes for 23 of the 35 families (65.7%): these included eleven de novo, five recessive (two homozygous and three compound heterozygous) and seventy-three dominant mutations. Although no novel commonly mutated gene was identified other than known LQTS genes, protein-protein interaction (PPI) network analyses revealed ten new pathogenic candidates that directly or indirectly interact with proteins encoded by known LQTS genes. Furthermore, candidate gene based association studies using an independent set of 138 unrelated LQTS cases and 587 controls identified an additional novel candidate. Together, mutations in these new candidates and known genes explained 37.1% of the LQTS families (13 in 35). Moreover, half of the newly identified candidates directly interact with calmodulin (5 in 11; comparison with all genes; p=0.042). Subsequent variant analysis in the independent set of 138 cases identified 16 variants in the 11 genes, of which 14 were in calmodulin-interacting genes (87.5%). These results suggest an important role of calmodulin and its interacting proteins in the pathogenesis of LQTS.
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spelling pubmed-44888442015-07-14 Exome Analyses of Long QT Syndrome Reveal Candidate Pathogenic Mutations in Calmodulin-Interacting Genes Shigemizu, Daichi Aiba, Takeshi Nakagawa, Hidewaki Ozaki, Kouichi Miya, Fuyuki Satake, Wataru Toda, Tatsushi Miyamoto, Yoshihiro Fujimoto, Akihiro Suzuki, Yutaka Kubo, Michiaki Tsunoda, Tatsuhiko Shimizu, Wataru Tanaka, Toshihiro PLoS One Research Article Long QT syndrome (LQTS) is an arrhythmogenic disorder that can lead to sudden death. To date, mutations in 15 LQTS-susceptibility genes have been implicated. However, the genetic cause for approximately 20% of LQTS patients remains elusive. Here, we performed whole-exome sequencing analyses on 59 LQTS and 61 unaffected individuals in 35 families and 138 unrelated LQTS cases, after genetic screening of known LQTS genes. Our systematic analysis of familial cases and subsequent verification by Sanger sequencing identified 92 candidate mutations in 88 genes for 23 of the 35 families (65.7%): these included eleven de novo, five recessive (two homozygous and three compound heterozygous) and seventy-three dominant mutations. Although no novel commonly mutated gene was identified other than known LQTS genes, protein-protein interaction (PPI) network analyses revealed ten new pathogenic candidates that directly or indirectly interact with proteins encoded by known LQTS genes. Furthermore, candidate gene based association studies using an independent set of 138 unrelated LQTS cases and 587 controls identified an additional novel candidate. Together, mutations in these new candidates and known genes explained 37.1% of the LQTS families (13 in 35). Moreover, half of the newly identified candidates directly interact with calmodulin (5 in 11; comparison with all genes; p=0.042). Subsequent variant analysis in the independent set of 138 cases identified 16 variants in the 11 genes, of which 14 were in calmodulin-interacting genes (87.5%). These results suggest an important role of calmodulin and its interacting proteins in the pathogenesis of LQTS. Public Library of Science 2015-07-01 /pmc/articles/PMC4488844/ /pubmed/26132555 http://dx.doi.org/10.1371/journal.pone.0130329 Text en © 2015 Shigemizu 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
Shigemizu, Daichi
Aiba, Takeshi
Nakagawa, Hidewaki
Ozaki, Kouichi
Miya, Fuyuki
Satake, Wataru
Toda, Tatsushi
Miyamoto, Yoshihiro
Fujimoto, Akihiro
Suzuki, Yutaka
Kubo, Michiaki
Tsunoda, Tatsuhiko
Shimizu, Wataru
Tanaka, Toshihiro
Exome Analyses of Long QT Syndrome Reveal Candidate Pathogenic Mutations in Calmodulin-Interacting Genes
title Exome Analyses of Long QT Syndrome Reveal Candidate Pathogenic Mutations in Calmodulin-Interacting Genes
title_full Exome Analyses of Long QT Syndrome Reveal Candidate Pathogenic Mutations in Calmodulin-Interacting Genes
title_fullStr Exome Analyses of Long QT Syndrome Reveal Candidate Pathogenic Mutations in Calmodulin-Interacting Genes
title_full_unstemmed Exome Analyses of Long QT Syndrome Reveal Candidate Pathogenic Mutations in Calmodulin-Interacting Genes
title_short Exome Analyses of Long QT Syndrome Reveal Candidate Pathogenic Mutations in Calmodulin-Interacting Genes
title_sort exome analyses of long qt syndrome reveal candidate pathogenic mutations in calmodulin-interacting genes
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4488844/
https://www.ncbi.nlm.nih.gov/pubmed/26132555
http://dx.doi.org/10.1371/journal.pone.0130329
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