Skip to main content
Erschienen in: International Journal of Legal Medicine 4/2011

01.07.2011 | Original Article

Prevalence of HCM and long QT syndrome mutations in young sudden cardiac death-related cases

verfasst von: Catarina Allegue, Rocio Gil, Alejandro Blanco-Verea, Montserrat Santori, Marisol Rodríguez-Calvo, Luis Concheiro, Ángel Carracedo, María Brion

Erschienen in: International Journal of Legal Medicine | Ausgabe 4/2011

Einloggen, um Zugang zu erhalten

Abstract

Cardiomyopathies and channelopathies are major causes of sudden cardiac death. The genetic study of these diseases is difficult because of their heterogenic nature not only in their genetic traits but also in their phenotypic expression. The purpose of the present study is the analysis of a wide spectrum of previously known genetic mutations in key genes related to hypertrophic cardiomyopathy (HCM), long QT syndrome (LQTS), and Brugada syndrome (BrS) development. The samples studied include cases of sudden cardiac death (SCD) in young adults and their relatives in order to identify the real impact of genetic screening of SCD in forensic cases. Genetic screening of described variation in 16 genes implicated in the development of HCM and three more genes implicated in LQTS and BrS was performed by using MassARRAY™ technology. In addition, direct sequencing of the two most prevalent genes implicated in the development of SQTL type 1 and 2 was also carried out. Genetic screening allowed us to unmask four possibly pathogenic mutation carriers in the 49 SCD cases considered; carriers of mutation represent 9% (2/23) of the probands with structural anomalies found after autopsy and 7% (1/14) of the probands with structurally normal hearts after in depth autopsy protocol. One mutation was found among 12 of the recovered SCD cases considered. In people with direct family history of sudden cardiac death, but not themselves, 11 additional mutation carriers were found. Three different mutations were found in six of the 19 LQTS patients, representing three families and two different mutations were found among six patients with previous syncope. Genetic analysis in sudden cardiac death cases could help to elucidate the cause of death, but it also can help in the prevention of future deaths in families at risk. The study presented here shows the importance and relevance of genetic screening in patients with signs of cardiac hypertrophy and in family cases with more than one relative affected.
Literatur
1.
Zurück zum Zitat Sen-Chowdhry S, McKenna WJ (2006) Sudden cardiac death in the young: a strategy for prevention by targeted evaluation. Cardiology 105(4):196–206PubMedCrossRef Sen-Chowdhry S, McKenna WJ (2006) Sudden cardiac death in the young: a strategy for prevention by targeted evaluation. Cardiology 105(4):196–206PubMedCrossRef
2.
3.
Zurück zum Zitat Basso C, Calabrese F, Corrado D, Thiene G (2001) Postmortem diagnosis in sudden cardiac death victims: macroscopic, microscopic and molecular findings. Cardiovasc Res 50(2):290–300PubMedCrossRef Basso C, Calabrese F, Corrado D, Thiene G (2001) Postmortem diagnosis in sudden cardiac death victims: macroscopic, microscopic and molecular findings. Cardiovasc Res 50(2):290–300PubMedCrossRef
4.
Zurück zum Zitat Rodriguez-Calvo MS, Brion M, Allegue C, Concheiro L, Carracedo A (2008) Molecular genetics of sudden cardiac death. Forensic Sci Int 182(1–3):1–12PubMedCrossRef Rodriguez-Calvo MS, Brion M, Allegue C, Concheiro L, Carracedo A (2008) Molecular genetics of sudden cardiac death. Forensic Sci Int 182(1–3):1–12PubMedCrossRef
5.
Zurück zum Zitat Thiene G, Corrado D, Basso C (2007) Arrhythmogenic right ventricular cardiomyopathy/dysplasia. Orphanet J Rare Dis 2:5CrossRef Thiene G, Corrado D, Basso C (2007) Arrhythmogenic right ventricular cardiomyopathy/dysplasia. Orphanet J Rare Dis 2:5CrossRef
6.
Zurück zum Zitat Chugh SS, Kelly KL, Titus JL (2000) Sudden cardiac death with apparently normal heart. Circulation 102(6):649–654PubMed Chugh SS, Kelly KL, Titus JL (2000) Sudden cardiac death with apparently normal heart. Circulation 102(6):649–654PubMed
7.
Zurück zum Zitat Oliva A, Brugada R, D’Aloja E, Boschi I, Partemi S, Brugada J, Pascali VL (2010) State of the art in forensic investigation of sudden cardiac death. Am J Forensic Med Pathol 32(1):1–16CrossRef Oliva A, Brugada R, D’Aloja E, Boschi I, Partemi S, Brugada J, Pascali VL (2010) State of the art in forensic investigation of sudden cardiac death. Am J Forensic Med Pathol 32(1):1–16CrossRef
8.
Zurück zum Zitat Basso C, Burke M, Fornes P, Gallagher PJ, de Gouveia RH, Sheppard M, Gvan T, der Wal A (2008) Guidelines for autopsy investigation of sudden cardiac death. Virchows Arch 452(1):11–18PubMedCrossRef Basso C, Burke M, Fornes P, Gallagher PJ, de Gouveia RH, Sheppard M, Gvan T, der Wal A (2008) Guidelines for autopsy investigation of sudden cardiac death. Virchows Arch 452(1):11–18PubMedCrossRef
9.
Zurück zum Zitat Brion M, Allegue C, Monserrat L, Hermida M, Castro-Beiras A, Carracedo A (2008) Large scale analysis of HCM mutations in sudden cardiac death. Forensic Sci Int Genet Suppl Ser 1:549–550CrossRef Brion M, Allegue C, Monserrat L, Hermida M, Castro-Beiras A, Carracedo A (2008) Large scale analysis of HCM mutations in sudden cardiac death. Forensic Sci Int Genet Suppl Ser 1:549–550CrossRef
10.
Zurück zum Zitat Allegue C, Gil R, Sanchez-Diz P, Torres M, Quintela I, Carracedo A, Brion M (2010) A new approach to long QT syndrome mutation detection by Sequenom MassARRAY system. Electrophoresis 31(10):1648–1655PubMedCrossRef Allegue C, Gil R, Sanchez-Diz P, Torres M, Quintela I, Carracedo A, Brion M (2010) A new approach to long QT syndrome mutation detection by Sequenom MassARRAY system. Electrophoresis 31(10):1648–1655PubMedCrossRef
11.
Zurück zum Zitat Donger C, Denjoy I, Berthet M, Neyroud N, Cruaud C, Bennaceur M, Chivoret G, Schwartz K, Coumel P, Guicheney P (1997) KVLQT1 C-terminal missense mutation causes a forme fruste long-QT syndrome. Circulation 96(9):2778–2781PubMed Donger C, Denjoy I, Berthet M, Neyroud N, Cruaud C, Bennaceur M, Chivoret G, Schwartz K, Coumel P, Guicheney P (1997) KVLQT1 C-terminal missense mutation causes a forme fruste long-QT syndrome. Circulation 96(9):2778–2781PubMed
12.
Zurück zum Zitat Lupoglazoff JM, Denjoy I, Villain E, Fressart V, Simon F, Bozio A, Berthet M, Benammar N, Hainque B, Guicheney P (2004) Long QT syndrome in neonates: conduction disorders associated with HERG mutations and sinus bradycardia with KCNQ1 mutations. J Am Coll Cardiol 43(5):826–830PubMedCrossRef Lupoglazoff JM, Denjoy I, Villain E, Fressart V, Simon F, Bozio A, Berthet M, Benammar N, Hainque B, Guicheney P (2004) Long QT syndrome in neonates: conduction disorders associated with HERG mutations and sinus bradycardia with KCNQ1 mutations. J Am Coll Cardiol 43(5):826–830PubMedCrossRef
13.
Zurück zum Zitat Splawski I, Shen J, Timothy KW, Lehmann MH, Priori S, Robinson JL, Moss AJ, Schwartz PJ, Towbin JA, Vincent GM, Keating MT (2000) Spectrum of mutations in long-QT syndrome genes KVLQT1, HERG, SCN5A, KCNE1, and KCNE2. Circulation 102(10):1178–1185PubMed Splawski I, Shen J, Timothy KW, Lehmann MH, Priori S, Robinson JL, Moss AJ, Schwartz PJ, Towbin JA, Vincent GM, Keating MT (2000) Spectrum of mutations in long-QT syndrome genes KVLQT1, HERG, SCN5A, KCNE1, and KCNE2. Circulation 102(10):1178–1185PubMed
14.
Zurück zum Zitat Tanaka T, Nagai R, Tomoike H, Takata S, Yano K, Yabuta K, Haneda N, Nakano O, Shibata A, Sawayama T, Kasai H, Yazaki Y, Nakamura Y (1997) Four novel KVLQT1 and four novel HERG mutations in familial long-QT syndrome. Circulation 95(3):565–567PubMed Tanaka T, Nagai R, Tomoike H, Takata S, Yano K, Yabuta K, Haneda N, Nakano O, Shibata A, Sawayama T, Kasai H, Yazaki Y, Nakamura Y (1997) Four novel KVLQT1 and four novel HERG mutations in familial long-QT syndrome. Circulation 95(3):565–567PubMed
15.
Zurück zum Zitat Kapplinger JD, Tester DJ, Salisbury BA, Carr JL, Harris-Kerr C, Pollevick GD, Wilde AA, Ackerman MJ (2009) Spectrum and prevalence of mutations from the first 2,500 consecutive unrelated patients referred for the FAMILION long QT syndrome genetic test. Heart Rhythm 6(9):1297–1303PubMedCrossRef Kapplinger JD, Tester DJ, Salisbury BA, Carr JL, Harris-Kerr C, Pollevick GD, Wilde AA, Ackerman MJ (2009) Spectrum and prevalence of mutations from the first 2,500 consecutive unrelated patients referred for the FAMILION long QT syndrome genetic test. Heart Rhythm 6(9):1297–1303PubMedCrossRef
16.
Zurück zum Zitat Morita H, Larson MG, Barr SC, Vasan RS, O’Donnell CJ, Hirschhorn JN, Levy D, Corey D, Seidman CE, Seidman JG, Benjamin EJ (2006) Single-gene mutations and increased left ventricular wall thickness in the community: the Framingham Heart Study. Circulation 113(23):2697–2705PubMedCrossRef Morita H, Larson MG, Barr SC, Vasan RS, O’Donnell CJ, Hirschhorn JN, Levy D, Corey D, Seidman CE, Seidman JG, Benjamin EJ (2006) Single-gene mutations and increased left ventricular wall thickness in the community: the Framingham Heart Study. Circulation 113(23):2697–2705PubMedCrossRef
17.
Zurück zum Zitat Cardim N, Perrot A, Santos S, Morgado P, Padua M, Ferreira S, Reis RP, Monteiro C, Ferreira T, Correia JM, Osterziel KJ (2005) Hypertrophic cardiomyopathy in a Portuguese population: mutations in the myosin-binding protein C gene. Rev Port Cardiol 24(12):1463–1476PubMed Cardim N, Perrot A, Santos S, Morgado P, Padua M, Ferreira S, Reis RP, Monteiro C, Ferreira T, Correia JM, Osterziel KJ (2005) Hypertrophic cardiomyopathy in a Portuguese population: mutations in the myosin-binding protein C gene. Rev Port Cardiol 24(12):1463–1476PubMed
18.
Zurück zum Zitat Van Driest SL, Vasile VC, Ommen SR, Will ML, Tajik AJ, Gersh BJAckerman MJ (2004) Myosin binding protein C mutations and compound heterozygosity in hypertrophic cardiomyopathy. J Am Coll Cardiol 44(9):1903–1910PubMedCrossRef Van Driest SL, Vasile VC, Ommen SR, Will ML, Tajik AJ, Gersh BJAckerman MJ (2004) Myosin binding protein C mutations and compound heterozygosity in hypertrophic cardiomyopathy. J Am Coll Cardiol 44(9):1903–1910PubMedCrossRef
19.
Zurück zum Zitat Choi G, Kopplin LJ, Tester DJ, Will ML, Haglund CM, Ackerman MJ (2004) Spectrum and frequency of cardiac channel defects in swimming-triggered arrhythmia syndromes. Circulation 110(15):2119–2124PubMedCrossRef Choi G, Kopplin LJ, Tester DJ, Will ML, Haglund CM, Ackerman MJ (2004) Spectrum and frequency of cardiac channel defects in swimming-triggered arrhythmia syndromes. Circulation 110(15):2119–2124PubMedCrossRef
20.
Zurück zum Zitat Larsen LA, Christiansen M, Vuust J, Andersen PS (1999) High-throughput single-strand conformation polymorphism analysis by automated capillary electrophoresis: robust multiplex analysis and pattern-based identification of allelic variants. Hum Mutat 13(4):318–327PubMedCrossRef Larsen LA, Christiansen M, Vuust J, Andersen PS (1999) High-throughput single-strand conformation polymorphism analysis by automated capillary electrophoresis: robust multiplex analysis and pattern-based identification of allelic variants. Hum Mutat 13(4):318–327PubMedCrossRef
21.
Zurück zum Zitat Splawski I, Shen J, Timothy KW, Vincent GM, Lehmann MH, Keating MT (1998) Genomic structure of three long QT syndrome genes: KVLQT1, HERG, and KCNE1. Genomics 51(1):86–97PubMedCrossRef Splawski I, Shen J, Timothy KW, Vincent GM, Lehmann MH, Keating MT (1998) Genomic structure of three long QT syndrome genes: KVLQT1, HERG, and KCNE1. Genomics 51(1):86–97PubMedCrossRef
22.
Zurück zum Zitat Struijk JJ, Kanters JK, Andersen MP, Hardahl T, Graff C, Christiansen M, Toft E (2006) Classification of the long-QT syndrome based on discriminant analysis of T-wave morphology. Med Biol Eng Comput 44(7):543–549PubMedCrossRef Struijk JJ, Kanters JK, Andersen MP, Hardahl T, Graff C, Christiansen M, Toft E (2006) Classification of the long-QT syndrome based on discriminant analysis of T-wave morphology. Med Biol Eng Comput 44(7):543–549PubMedCrossRef
23.
Zurück zum Zitat Kapa S, Tester DJ, Salisbury BA, Harris-Kerr C, Pungliya MS, Alders M, Wilde AA, Ackerman MJ (2009) Genetic testing for long-QT syndrome: distinguishing pathogenic mutations from benign variants. Circulation 120(18):1752–1760PubMedCrossRef Kapa S, Tester DJ, Salisbury BA, Harris-Kerr C, Pungliya MS, Alders M, Wilde AA, Ackerman MJ (2009) Genetic testing for long-QT syndrome: distinguishing pathogenic mutations from benign variants. Circulation 120(18):1752–1760PubMedCrossRef
24.
Zurück zum Zitat Napolitano C, Priori SG, Schwartz PJ, Bloise R, Ronchetti E, Nastoli J, Bottelli G, Cerrone M, Leonardi S (2005) Genetic testing in the long QT syndrome: development and validation of an efficient approach to genotyping in clinical practice. JAMA 294(23):2975–2980PubMedCrossRef Napolitano C, Priori SG, Schwartz PJ, Bloise R, Ronchetti E, Nastoli J, Bottelli G, Cerrone M, Leonardi S (2005) Genetic testing in the long QT syndrome: development and validation of an efficient approach to genotyping in clinical practice. JAMA 294(23):2975–2980PubMedCrossRef
25.
Zurück zum Zitat Hershberger RE, Norton N, Morales A, Li D, Siegfried JD, Gonzalez-Quintana J (2010) Coding sequence rare variants identified in MYBPC3, MYH6, TPM1, TNNC1 and TNNI3 from 312 patients with familial or idiopathic dilated cardiomyopathy. Circ Cardiovasc Genet 3(2):155–161PubMedCrossRef Hershberger RE, Norton N, Morales A, Li D, Siegfried JD, Gonzalez-Quintana J (2010) Coding sequence rare variants identified in MYBPC3, MYH6, TPM1, TNNC1 and TNNI3 from 312 patients with familial or idiopathic dilated cardiomyopathy. Circ Cardiovasc Genet 3(2):155–161PubMedCrossRef
26.
Zurück zum Zitat Olivotto I, Girolami F, Ackerman MJ, Nistri S, Bos JM, Zachara E, Ommen SR, Theis JL, Vaubel RA, Re F, Armentano C, Poggesi C, Torricelli F, Cecchi F (2008) Myofilament protein gene mutation screening and outcome of patients with hypertrophic cardiomyopathy. Mayo Clin Proc 83(6):630–638PubMedCrossRef Olivotto I, Girolami F, Ackerman MJ, Nistri S, Bos JM, Zachara E, Ommen SR, Theis JL, Vaubel RA, Re F, Armentano C, Poggesi C, Torricelli F, Cecchi F (2008) Myofilament protein gene mutation screening and outcome of patients with hypertrophic cardiomyopathy. Mayo Clin Proc 83(6):630–638PubMedCrossRef
27.
Zurück zum Zitat Behr ER, Dalageorgou C, Christiansen M, Syrris P, Hughes S, Tome Esteban MT, Rowland E, Jeffery S, McKenna WJ (2008) Sudden arrhythmic death syndrome: familial evaluation identifies inheritable heart disease in the majority of families. Eur Heart J 29(13):1670–1680PubMedCrossRef Behr ER, Dalageorgou C, Christiansen M, Syrris P, Hughes S, Tome Esteban MT, Rowland E, Jeffery S, McKenna WJ (2008) Sudden arrhythmic death syndrome: familial evaluation identifies inheritable heart disease in the majority of families. Eur Heart J 29(13):1670–1680PubMedCrossRef
28.
Zurück zum Zitat Gimeno JR, Lacunza J, Garcia-Alberola A, Cerdan MC, Oliva MJ, Garcia-Molina E, Lopez-Ruiz M, Castro F, Gonzalez-Carrillo J, de la Morena G, Valdes M (2009) Penetrance and risk profile in inherited cardiac diseases studied in a dedicated screening clinic. Am J Cardiol 104(3):406–410PubMedCrossRef Gimeno JR, Lacunza J, Garcia-Alberola A, Cerdan MC, Oliva MJ, Garcia-Molina E, Lopez-Ruiz M, Castro F, Gonzalez-Carrillo J, de la Morena G, Valdes M (2009) Penetrance and risk profile in inherited cardiac diseases studied in a dedicated screening clinic. Am J Cardiol 104(3):406–410PubMedCrossRef
29.
Zurück zum Zitat Hofman N, Tan HL, Clur SA, Alders M, van Langen IM, Wilde AA (2007) Contribution of inherited heart disease to sudden cardiac death in childhood. Pediatrics 120(4):e967–e973PubMedCrossRef Hofman N, Tan HL, Clur SA, Alders M, van Langen IM, Wilde AA (2007) Contribution of inherited heart disease to sudden cardiac death in childhood. Pediatrics 120(4):e967–e973PubMedCrossRef
30.
Zurück zum Zitat Tan HL, Hofman N, van Langen IM, van der Wal AC, Wilde AA (2005) Sudden unexplained death: heritability and diagnostic yield of cardiological and genetic examination in surviving relatives. Circulation 112(2):207–213PubMedCrossRef Tan HL, Hofman N, van Langen IM, van der Wal AC, Wilde AA (2005) Sudden unexplained death: heritability and diagnostic yield of cardiological and genetic examination in surviving relatives. Circulation 112(2):207–213PubMedCrossRef
31.
Zurück zum Zitat Gimeno JR, Oliva MJ, Lacunza J, Alberola AG, Sabater M, Martinez-Sanchez J, Saura D, Romero A, Valdes M (2010) Characteristics of sudden death in inherited heart disease. Rev Esp Cardiol 63(3):268–276PubMedCrossRef Gimeno JR, Oliva MJ, Lacunza J, Alberola AG, Sabater M, Martinez-Sanchez J, Saura D, Romero A, Valdes M (2010) Characteristics of sudden death in inherited heart disease. Rev Esp Cardiol 63(3):268–276PubMedCrossRef
32.
Zurück zum Zitat Christiaans I, van Engelen K, van Langen IM, Birnie E, Bonsel GJ, Elliott PM, Wilde AA (2010) Risk stratification for sudden cardiac death in hypertrophic cardiomyopathy: systematic review of clinical risk markers. Europace 12(3):313–321PubMedCrossRef Christiaans I, van Engelen K, van Langen IM, Birnie E, Bonsel GJ, Elliott PM, Wilde AA (2010) Risk stratification for sudden cardiac death in hypertrophic cardiomyopathy: systematic review of clinical risk markers. Europace 12(3):313–321PubMedCrossRef
33.
Zurück zum Zitat Michaud K, Mangin P, Elger BS (2010) Genetic analysis of sudden cardiac death victims: a survey of current forensic autopsy practices. Int J Leg Med. doi:10.1007/s00414-010-0474-0 Michaud K, Mangin P, Elger BS (2010) Genetic analysis of sudden cardiac death victims: a survey of current forensic autopsy practices. Int J Leg Med. doi:10.​1007/​s00414-010-0474-0
34.
Zurück zum Zitat Brion M, Quintela I, Sobrino B, Torres M, Allegue C, Carracedo A (2010) New technologies in the genetic approach to sudden cardiac death in the young. Forensic Sci Int 203(1–3):15–24PubMedCrossRef Brion M, Quintela I, Sobrino B, Torres M, Allegue C, Carracedo A (2010) New technologies in the genetic approach to sudden cardiac death in the young. Forensic Sci Int 203(1–3):15–24PubMedCrossRef
Metadaten
Titel
Prevalence of HCM and long QT syndrome mutations in young sudden cardiac death-related cases
verfasst von
Catarina Allegue
Rocio Gil
Alejandro Blanco-Verea
Montserrat Santori
Marisol Rodríguez-Calvo
Luis Concheiro
Ángel Carracedo
María Brion
Publikationsdatum
01.07.2011
Verlag
Springer-Verlag
Erschienen in
International Journal of Legal Medicine / Ausgabe 4/2011
Print ISSN: 0937-9827
Elektronische ISSN: 1437-1596
DOI
https://doi.org/10.1007/s00414-011-0572-7

Weitere Artikel der Ausgabe 4/2011

International Journal of Legal Medicine 4/2011 Zur Ausgabe

Neu im Fachgebiet Rechtsmedizin

Molekularpathologische Untersuchungen im Wandel der Zeit

Open Access Biomarker Leitthema

Um auch an kleinen Gewebeproben zuverlässige und reproduzierbare Ergebnisse zu gewährleisten ist eine strenge Qualitätskontrolle in jedem Schritt des Arbeitsablaufs erforderlich. Eine nicht ordnungsgemäße Prüfung oder Behandlung des …

Vergleichende Pathologie in der onkologischen Forschung

Pathologie Leitthema

Die vergleichende experimentelle Pathologie („comparative experimental pathology“) ist ein Fachbereich an der Schnittstelle von Human- und Veterinärmedizin. Sie widmet sich der vergleichenden Erforschung von Gemeinsamkeiten und Unterschieden von …

Gastrointestinale Stromatumoren

Open Access GIST CME-Artikel

Gastrointestinale Stromatumoren (GIST) stellen seit über 20 Jahren ein Paradigma für die zielgerichtete Therapie mit Tyrosinkinaseinhibitoren dar. Eine elementare Voraussetzung für eine mögliche neoadjuvante oder adjuvante Behandlung bei …

Personalisierte Medizin in der Onkologie

Aufgrund des erheblichen technologischen Fortschritts in der molekularen und genetischen Diagnostik sowie zunehmender Erkenntnisse über die molekulare Pathogenese von Krankheiten hat in den letzten zwei Jahrzehnten ein grundlegender …