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Transethnic Genome-Wide Association Study Provides Insights in the Genetic Architecture and Heritability of Long QT Syndrome
Long QT syndrome (LQTS) is a rare genetic disorder and a major preventable cause of sudden cardiac death in the young. A causal rare genetic variant with large effect size is identified in up to 80% of probands (genotype positive) and cascade family screening shows incomplete penetrance of genetic v...
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
Lippincott Williams & Wilkins
2020
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7382531/ https://www.ncbi.nlm.nih.gov/pubmed/32429735 http://dx.doi.org/10.1161/CIRCULATIONAHA.120.045956 |
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author | Lahrouchi, Najim Tadros, Rafik Crotti, Lia Mizusawa, Yuka Postema, Pieter G. Beekman, Leander Walsh, Roddy Hasegawa, Kanae Barc, Julien Ernsting, Marko Turkowski, Kari L. Mazzanti, Andrea Beckmann, Britt M. Shimamoto, Keiko Diamant, Ulla-Britt Wijeyeratne, Yanushi D. Kucho, Yu Robyns, Tomas Ishikawa, Taisuke Arbelo, Elena Christiansen, Michael Winbo, Annika Jabbari, Reza Lubitz, Steven A. Steinfurt, Johannes Rudic, Boris Loeys, Bart Shoemaker, M. Ben Weeke, Peter E. Pfeiffer, Ryan Davies, Brianna Andorin, Antoine Hofman, Nynke Dagradi, Federica Pedrazzini, Matteo Tester, David J. Bos, J. Martijn Sarquella-Brugada, Georgia Campuzano, Óscar Platonov, Pyotr G. Stallmeyer, Birgit Zumhagen, Sven Nannenberg, Eline A. Veldink, Jan H. van den Berg, Leonard H. Al-Chalabi, Ammar Shaw, Christopher E. Shaw, Pamela J. Morrison, Karen E. Andersen, Peter M. Müller-Nurasyid, Martina Cusi, Daniele Barlassina, Cristina Galan, Pilar Lathrop, Mark Munter, Markus Werge, Thomas Ribasés, Marta Aung, Tin Khor, Chiea C. Ozaki, Mineo Lichtner, Peter Meitinger, Thomas van Tintelen, J. Peter Hoedemaekers, Yvonne Denjoy, Isabelle Leenhardt, Antoine Napolitano, Carlo Shimizu, Wataru Schott, Jean-Jacques Gourraud, Jean-Baptiste Makiyama, Takeru Ohno, Seiko Itoh, Hideki Krahn, Andrew D. Antzelevitch, Charles Roden, Dan M. Saenen, Johan Borggrefe, Martin Odening, Katja E. Ellinor, Patrick T. Tfelt-Hansen, Jacob Skinner, Jonathan R. van den Berg, Maarten P. Olesen, Morten Salling Brugada, Josep Brugada, Ramón Makita, Naomasa Breckpot, Jeroen Yoshinaga, Masao Behr, Elijah R. Rydberg, Annika Aiba, Takeshi Kääb, Stefan Priori, Silvia G. Guicheney, Pascale Tan, Hanno L. Newton-Cheh, Christopher Ackerman, Michael J. Schwartz, Peter J. Schulze-Bahr, Eric Probst, Vincent Horie, Minoru Wilde, Arthur A. Tanck, Michael W.T. Bezzina, Connie R. |
author_facet | Lahrouchi, Najim Tadros, Rafik Crotti, Lia Mizusawa, Yuka Postema, Pieter G. Beekman, Leander Walsh, Roddy Hasegawa, Kanae Barc, Julien Ernsting, Marko Turkowski, Kari L. Mazzanti, Andrea Beckmann, Britt M. Shimamoto, Keiko Diamant, Ulla-Britt Wijeyeratne, Yanushi D. Kucho, Yu Robyns, Tomas Ishikawa, Taisuke Arbelo, Elena Christiansen, Michael Winbo, Annika Jabbari, Reza Lubitz, Steven A. Steinfurt, Johannes Rudic, Boris Loeys, Bart Shoemaker, M. Ben Weeke, Peter E. Pfeiffer, Ryan Davies, Brianna Andorin, Antoine Hofman, Nynke Dagradi, Federica Pedrazzini, Matteo Tester, David J. Bos, J. Martijn Sarquella-Brugada, Georgia Campuzano, Óscar Platonov, Pyotr G. Stallmeyer, Birgit Zumhagen, Sven Nannenberg, Eline A. Veldink, Jan H. van den Berg, Leonard H. Al-Chalabi, Ammar Shaw, Christopher E. Shaw, Pamela J. Morrison, Karen E. Andersen, Peter M. Müller-Nurasyid, Martina Cusi, Daniele Barlassina, Cristina Galan, Pilar Lathrop, Mark Munter, Markus Werge, Thomas Ribasés, Marta Aung, Tin Khor, Chiea C. Ozaki, Mineo Lichtner, Peter Meitinger, Thomas van Tintelen, J. Peter Hoedemaekers, Yvonne Denjoy, Isabelle Leenhardt, Antoine Napolitano, Carlo Shimizu, Wataru Schott, Jean-Jacques Gourraud, Jean-Baptiste Makiyama, Takeru Ohno, Seiko Itoh, Hideki Krahn, Andrew D. Antzelevitch, Charles Roden, Dan M. Saenen, Johan Borggrefe, Martin Odening, Katja E. Ellinor, Patrick T. Tfelt-Hansen, Jacob Skinner, Jonathan R. van den Berg, Maarten P. Olesen, Morten Salling Brugada, Josep Brugada, Ramón Makita, Naomasa Breckpot, Jeroen Yoshinaga, Masao Behr, Elijah R. Rydberg, Annika Aiba, Takeshi Kääb, Stefan Priori, Silvia G. Guicheney, Pascale Tan, Hanno L. Newton-Cheh, Christopher Ackerman, Michael J. Schwartz, Peter J. Schulze-Bahr, Eric Probst, Vincent Horie, Minoru Wilde, Arthur A. Tanck, Michael W.T. Bezzina, Connie R. |
author_sort | Lahrouchi, Najim |
collection | PubMed |
description | Long QT syndrome (LQTS) is a rare genetic disorder and a major preventable cause of sudden cardiac death in the young. A causal rare genetic variant with large effect size is identified in up to 80% of probands (genotype positive) and cascade family screening shows incomplete penetrance of genetic variants. Furthermore, a proportion of cases meeting diagnostic criteria for LQTS remain genetically elusive despite genetic testing of established genes (genotype negative). These observations raise the possibility that common genetic variants with small effect size contribute to the clinical picture of LQTS. This study aimed to characterize and quantify the contribution of common genetic variation to LQTS disease susceptibility. METHODS: We conducted genome-wide association studies followed by transethnic meta-analysis in 1656 unrelated patients with LQTS of European or Japanese ancestry and 9890 controls to identify susceptibility single nucleotide polymorphisms. We estimated the common variant heritability of LQTS and tested the genetic correlation between LQTS susceptibility and other cardiac traits. Furthermore, we tested the aggregate effect of the 68 single nucleotide polymorphisms previously associated with the QT-interval in the general population using a polygenic risk score. RESULTS: Genome-wide association analysis identified 3 loci associated with LQTS at genome-wide statistical significance (P<5×10(−8)) near NOS1AP, KCNQ1, and KLF12, and 1 missense variant in KCNE1(p.Asp85Asn) at the suggestive threshold (P<10(−6)). Heritability analyses showed that ≈15% of variance in overall LQTS susceptibility was attributable to common genetic variation (h2SNP 0.148; standard error 0.019). LQTS susceptibility showed a strong genome-wide genetic correlation with the QT-interval in the general population (r(g)=0.40; P=3.2×10(−3)). The polygenic risk score comprising common variants previously associated with the QT-interval in the general population was greater in LQTS cases compared with controls (P<10−13), and it is notable that, among patients with LQTS, this polygenic risk score was greater in patients who were genotype negative compared with those who were genotype positive (P<0.005). CONCLUSIONS: This work establishes an important role for common genetic variation in susceptibility to LQTS. We demonstrate overlap between genetic control of the QT-interval in the general population and genetic factors contributing to LQTS susceptibility. Using polygenic risk score analyses aggregating common genetic variants that modulate the QT-interval in the general population, we provide evidence for a polygenic architecture in genotype negative LQTS. |
format | Online Article Text |
id | pubmed-7382531 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2020 |
publisher | Lippincott Williams & Wilkins |
record_format | MEDLINE/PubMed |
spelling | pubmed-73825312020-08-05 Transethnic Genome-Wide Association Study Provides Insights in the Genetic Architecture and Heritability of Long QT Syndrome Lahrouchi, Najim Tadros, Rafik Crotti, Lia Mizusawa, Yuka Postema, Pieter G. Beekman, Leander Walsh, Roddy Hasegawa, Kanae Barc, Julien Ernsting, Marko Turkowski, Kari L. Mazzanti, Andrea Beckmann, Britt M. Shimamoto, Keiko Diamant, Ulla-Britt Wijeyeratne, Yanushi D. Kucho, Yu Robyns, Tomas Ishikawa, Taisuke Arbelo, Elena Christiansen, Michael Winbo, Annika Jabbari, Reza Lubitz, Steven A. Steinfurt, Johannes Rudic, Boris Loeys, Bart Shoemaker, M. Ben Weeke, Peter E. Pfeiffer, Ryan Davies, Brianna Andorin, Antoine Hofman, Nynke Dagradi, Federica Pedrazzini, Matteo Tester, David J. Bos, J. Martijn Sarquella-Brugada, Georgia Campuzano, Óscar Platonov, Pyotr G. Stallmeyer, Birgit Zumhagen, Sven Nannenberg, Eline A. Veldink, Jan H. van den Berg, Leonard H. Al-Chalabi, Ammar Shaw, Christopher E. Shaw, Pamela J. Morrison, Karen E. Andersen, Peter M. Müller-Nurasyid, Martina Cusi, Daniele Barlassina, Cristina Galan, Pilar Lathrop, Mark Munter, Markus Werge, Thomas Ribasés, Marta Aung, Tin Khor, Chiea C. Ozaki, Mineo Lichtner, Peter Meitinger, Thomas van Tintelen, J. Peter Hoedemaekers, Yvonne Denjoy, Isabelle Leenhardt, Antoine Napolitano, Carlo Shimizu, Wataru Schott, Jean-Jacques Gourraud, Jean-Baptiste Makiyama, Takeru Ohno, Seiko Itoh, Hideki Krahn, Andrew D. Antzelevitch, Charles Roden, Dan M. Saenen, Johan Borggrefe, Martin Odening, Katja E. Ellinor, Patrick T. Tfelt-Hansen, Jacob Skinner, Jonathan R. van den Berg, Maarten P. Olesen, Morten Salling Brugada, Josep Brugada, Ramón Makita, Naomasa Breckpot, Jeroen Yoshinaga, Masao Behr, Elijah R. Rydberg, Annika Aiba, Takeshi Kääb, Stefan Priori, Silvia G. Guicheney, Pascale Tan, Hanno L. Newton-Cheh, Christopher Ackerman, Michael J. Schwartz, Peter J. Schulze-Bahr, Eric Probst, Vincent Horie, Minoru Wilde, Arthur A. Tanck, Michael W.T. Bezzina, Connie R. Circulation Original Research Articles Long QT syndrome (LQTS) is a rare genetic disorder and a major preventable cause of sudden cardiac death in the young. A causal rare genetic variant with large effect size is identified in up to 80% of probands (genotype positive) and cascade family screening shows incomplete penetrance of genetic variants. Furthermore, a proportion of cases meeting diagnostic criteria for LQTS remain genetically elusive despite genetic testing of established genes (genotype negative). These observations raise the possibility that common genetic variants with small effect size contribute to the clinical picture of LQTS. This study aimed to characterize and quantify the contribution of common genetic variation to LQTS disease susceptibility. METHODS: We conducted genome-wide association studies followed by transethnic meta-analysis in 1656 unrelated patients with LQTS of European or Japanese ancestry and 9890 controls to identify susceptibility single nucleotide polymorphisms. We estimated the common variant heritability of LQTS and tested the genetic correlation between LQTS susceptibility and other cardiac traits. Furthermore, we tested the aggregate effect of the 68 single nucleotide polymorphisms previously associated with the QT-interval in the general population using a polygenic risk score. RESULTS: Genome-wide association analysis identified 3 loci associated with LQTS at genome-wide statistical significance (P<5×10(−8)) near NOS1AP, KCNQ1, and KLF12, and 1 missense variant in KCNE1(p.Asp85Asn) at the suggestive threshold (P<10(−6)). Heritability analyses showed that ≈15% of variance in overall LQTS susceptibility was attributable to common genetic variation (h2SNP 0.148; standard error 0.019). LQTS susceptibility showed a strong genome-wide genetic correlation with the QT-interval in the general population (r(g)=0.40; P=3.2×10(−3)). The polygenic risk score comprising common variants previously associated with the QT-interval in the general population was greater in LQTS cases compared with controls (P<10−13), and it is notable that, among patients with LQTS, this polygenic risk score was greater in patients who were genotype negative compared with those who were genotype positive (P<0.005). CONCLUSIONS: This work establishes an important role for common genetic variation in susceptibility to LQTS. We demonstrate overlap between genetic control of the QT-interval in the general population and genetic factors contributing to LQTS susceptibility. Using polygenic risk score analyses aggregating common genetic variants that modulate the QT-interval in the general population, we provide evidence for a polygenic architecture in genotype negative LQTS. Lippincott Williams & Wilkins 2020-05-20 2020-07-28 /pmc/articles/PMC7382531/ /pubmed/32429735 http://dx.doi.org/10.1161/CIRCULATIONAHA.120.045956 Text en © 2020 The Authors. Circulation is published on behalf of the American Heart Association, Inc., by Wolters Kluwer Health, Inc. This is an open access article under the terms of the Creative Commons Attribution Non-Commercial-NoDerivs (https://creativecommons.org/licenses/by-nc-nd/4.0/) License, which permits use, distribution, and reproduction in any medium, provided that the original work is properly cited, the use is noncommercial, and no modifications or adaptations are made. |
spellingShingle | Original Research Articles Lahrouchi, Najim Tadros, Rafik Crotti, Lia Mizusawa, Yuka Postema, Pieter G. Beekman, Leander Walsh, Roddy Hasegawa, Kanae Barc, Julien Ernsting, Marko Turkowski, Kari L. Mazzanti, Andrea Beckmann, Britt M. Shimamoto, Keiko Diamant, Ulla-Britt Wijeyeratne, Yanushi D. Kucho, Yu Robyns, Tomas Ishikawa, Taisuke Arbelo, Elena Christiansen, Michael Winbo, Annika Jabbari, Reza Lubitz, Steven A. Steinfurt, Johannes Rudic, Boris Loeys, Bart Shoemaker, M. Ben Weeke, Peter E. Pfeiffer, Ryan Davies, Brianna Andorin, Antoine Hofman, Nynke Dagradi, Federica Pedrazzini, Matteo Tester, David J. Bos, J. Martijn Sarquella-Brugada, Georgia Campuzano, Óscar Platonov, Pyotr G. Stallmeyer, Birgit Zumhagen, Sven Nannenberg, Eline A. Veldink, Jan H. van den Berg, Leonard H. Al-Chalabi, Ammar Shaw, Christopher E. Shaw, Pamela J. Morrison, Karen E. Andersen, Peter M. Müller-Nurasyid, Martina Cusi, Daniele Barlassina, Cristina Galan, Pilar Lathrop, Mark Munter, Markus Werge, Thomas Ribasés, Marta Aung, Tin Khor, Chiea C. Ozaki, Mineo Lichtner, Peter Meitinger, Thomas van Tintelen, J. Peter Hoedemaekers, Yvonne Denjoy, Isabelle Leenhardt, Antoine Napolitano, Carlo Shimizu, Wataru Schott, Jean-Jacques Gourraud, Jean-Baptiste Makiyama, Takeru Ohno, Seiko Itoh, Hideki Krahn, Andrew D. Antzelevitch, Charles Roden, Dan M. Saenen, Johan Borggrefe, Martin Odening, Katja E. Ellinor, Patrick T. Tfelt-Hansen, Jacob Skinner, Jonathan R. van den Berg, Maarten P. Olesen, Morten Salling Brugada, Josep Brugada, Ramón Makita, Naomasa Breckpot, Jeroen Yoshinaga, Masao Behr, Elijah R. Rydberg, Annika Aiba, Takeshi Kääb, Stefan Priori, Silvia G. Guicheney, Pascale Tan, Hanno L. Newton-Cheh, Christopher Ackerman, Michael J. Schwartz, Peter J. Schulze-Bahr, Eric Probst, Vincent Horie, Minoru Wilde, Arthur A. Tanck, Michael W.T. Bezzina, Connie R. Transethnic Genome-Wide Association Study Provides Insights in the Genetic Architecture and Heritability of Long QT Syndrome |
title | Transethnic Genome-Wide Association Study Provides Insights in the Genetic Architecture and Heritability of Long QT Syndrome |
title_full | Transethnic Genome-Wide Association Study Provides Insights in the Genetic Architecture and Heritability of Long QT Syndrome |
title_fullStr | Transethnic Genome-Wide Association Study Provides Insights in the Genetic Architecture and Heritability of Long QT Syndrome |
title_full_unstemmed | Transethnic Genome-Wide Association Study Provides Insights in the Genetic Architecture and Heritability of Long QT Syndrome |
title_short | Transethnic Genome-Wide Association Study Provides Insights in the Genetic Architecture and Heritability of Long QT Syndrome |
title_sort | transethnic genome-wide association study provides insights in the genetic architecture and heritability of long qt syndrome |
topic | Original Research Articles |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7382531/ https://www.ncbi.nlm.nih.gov/pubmed/32429735 http://dx.doi.org/10.1161/CIRCULATIONAHA.120.045956 |
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transethnicgenomewideassociationstudyprovidesinsightsinthegeneticarchitectureandheritabilityoflongqtsyndrome AT behrelijahr transethnicgenomewideassociationstudyprovidesinsightsinthegeneticarchitectureandheritabilityoflongqtsyndrome AT rydbergannika transethnicgenomewideassociationstudyprovidesinsightsinthegeneticarchitectureandheritabilityoflongqtsyndrome AT aibatakeshi transethnicgenomewideassociationstudyprovidesinsightsinthegeneticarchitectureandheritabilityoflongqtsyndrome AT kaabstefan transethnicgenomewideassociationstudyprovidesinsightsinthegeneticarchitectureandheritabilityoflongqtsyndrome AT priorisilviag transethnicgenomewideassociationstudyprovidesinsightsinthegeneticarchitectureandheritabilityoflongqtsyndrome AT guicheneypascale transethnicgenomewideassociationstudyprovidesinsightsinthegeneticarchitectureandheritabilityoflongqtsyndrome AT tanhannol transethnicgenomewideassociationstudyprovidesinsightsinthegeneticarchitectureandheritabilityoflongqtsyndrome AT newtonchehchristopher transethnicgenomewideassociationstudyprovidesinsightsinthegeneticarchitectureandheritabilityoflongqtsyndrome AT ackermanmichaelj transethnicgenomewideassociationstudyprovidesinsightsinthegeneticarchitectureandheritabilityoflongqtsyndrome AT schwartzpeterj transethnicgenomewideassociationstudyprovidesinsightsinthegeneticarchitectureandheritabilityoflongqtsyndrome AT schulzebahreric transethnicgenomewideassociationstudyprovidesinsightsinthegeneticarchitectureandheritabilityoflongqtsyndrome AT probstvincent transethnicgenomewideassociationstudyprovidesinsightsinthegeneticarchitectureandheritabilityoflongqtsyndrome AT horieminoru transethnicgenomewideassociationstudyprovidesinsightsinthegeneticarchitectureandheritabilityoflongqtsyndrome AT wildearthura transethnicgenomewideassociationstudyprovidesinsightsinthegeneticarchitectureandheritabilityoflongqtsyndrome AT tanckmichaelwt transethnicgenomewideassociationstudyprovidesinsightsinthegeneticarchitectureandheritabilityoflongqtsyndrome AT bezzinaconnier transethnicgenomewideassociationstudyprovidesinsightsinthegeneticarchitectureandheritabilityoflongqtsyndrome |