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PMID: 19808432 Published · ppublish English Case Reports Journal Article Research Support, N.I.H., Extramural Research Support, Non-U.S. Gov't

Malignant perinatal variant of long-QT syndrome caused by a profoundly dysfunctional cardiac sodium channel.

Circulation. Arrhythmia and electrophysiology ·Vol. 1 ·No. 5 ·2008-12-00 ·Pages 370-8

Wang DW, Crotti L, Shimizu W, Pedrazzini M, Cantu F, De Filippo P, Kishiki K, Miyazaki A, Ikeda T, Schwartz PJ, George AL

Abstract

Inherited cardiac arrhythmia susceptibility contributes to sudden death during infancy and may contribute to perinatal and neonatal mortality, but the molecular basis of this risk and the relationship to genetic disorders presenting later in life is unclear. We studied the functional and pharmacological properties of a novel de novo cardiac sodium channel gene (SCN5A) mutation associated with an extremely severe perinatal presentation of long-QT syndrome in unrelated probands of different ethnicity. Two subjects exhibiting severe fetal and perinatal ventricular arrhythmias were screened for SCN5A mutations, and the functional properties of a novel missense mutation (G1631D) were determined by whole-cell patch clamp recording. In vitro electrophysiological studies revealed a profound defect in sodium channel function characterized by approximately 10-fold slowing of inactivation, increased persistent current, slowing of recovery from inactivation, and depolarized voltage dependence of activation and inactivation. Single-channel recordings demonstrated increased frequency of late openings, prolonged mean open time, and increased latency to first opening for the mutant. Subjects carrying this mutation responded clinically to the combination of mexiletine with propranolol and survived. Pharmacologically, the mutant exhibited 2-fold greater tonic and use-dependent mexiletine block than wild-type channels. The mutant also exhibited enhanced tonic (2.4-fold) and use-dependent block ( approximately 5-fold) by propranolol, and we observed additive effects of the 2 drugs on the mutant. Our study demonstrates the molecular basis for a malignant perinatal presentation of long-QT syndrome, illustrates novel functional and pharmacological properties of SCN5A-G1631D, which caused the disorder, and reveals therapeutic benefits of propranolol block of mutant sodium channels in this setting.

MeSH Terms
Action Potentials Anti-Arrhythmia Agents/therapeutic use DNA Mutational Analysis Dose-Response Relationship, Drug Drug Therapy, Combination Electrocardiography Genetic Predisposition to Disease Gestational Age Humans Infant, Newborn Kinetics Long QT Syndrome/drug therapy,embryology,genetics,metabolism Male Mexiletine/therapeutic use Muscle Proteins/antagonists & inhibitors,genetics,metabolism Mutation, Missense Myocardium/metabolism NAV1.5 Voltage-Gated Sodium Channel Phenotype Propranolol/therapeutic use Recombinant Proteins/metabolism Severity of Illness Index Sodium/metabolism Sodium Channel Blockers/therapeutic use Sodium Channels/genetics,metabolism Treatment Outcome
Chemicals
Anti-Arrhythmia Agents Muscle Proteins NAV1.5 Voltage-Gated Sodium Channel Recombinant Proteins SCN5A protein, human Sodium Channel Blockers Sodium Channels Mexiletine Sodium Propranolol
Authors & Affiliations
11 authors, click to expand affiliations / ORCID
Wang Dao W
Department of Medicine, Vanderbilt University, Nashville, TN 37232-0275, USA.
Crotti Lia
Shimizu Wataru
Pedrazzini Matteo
Cantu Francesco
De Filippo Paolo
Kishiki Kanako
Miyazaki Aya
Ikeda Tomoaki
Schwartz Peter J
George Alfred L
References (39)
39 references, click to expand
  1. Pharmacological targeting of long QT mutant sodium channels.
    J Clin Invest. 1997 Apr 1;99(7):1714-20 PMID: 9120016
  2. De novo mutation in the SCN5A gene associated with early onset of sudden infant death.
    Circulation. 2001 Sep 4;104(10):1158-64 PMID: 11535573
  3. Perinatal arrhythmias: diagnosis and management.
    Clin Perinatol. 2007 Dec;34(4):627-52, vii-viii PMID: 18063110
  4. Molecular mechanism for an inherited cardiac arrhythmia.
    Nature. 1995 Aug 24;376(6542):683-5 PMID: 7651517
  5. A novel SCN5A mutation manifests as a malignant form of long QT syndrome with perinatal onset of tachycardia/bradycardia.
    Cardiovasc Res. 2004 Nov 1;64(2):268-78 PMID: 15485686
  6. Specific therapy based on the genotype and cellular mechanism in inherited cardiac arrhythmias. Long QT syndrome and Brugada syndrome.
    Curr Pharm Des. 2005;11(12):1561-72 PMID: 15892662
  7. Sodium channel mutations in paramyotonia congenita uncouple inactivation from activation.
    Neuron. 1994 Feb;12(2):281-94 PMID: 8110459
  8. Recurrent third-trimester fetal loss and maternal mosaicism for long-QT syndrome.
    Circulation. 2004 Jun 22;109(24):3029-34 PMID: 15184283
  9. Risk stratification in the long-QT syndrome.
    N Engl J Med. 2003 May 8;348(19):1866-74 PMID: 12736279
  10. Sodium channel block with mexiletine is effective in reducing dispersion of repolarization and preventing torsade des pointes in LQT2 and LQT3 models of the long-QT syndrome.
    Circulation. 1997 Sep 16;96(6):2038-47 PMID: 9323097
  11. KCNH2-K897T is a genetic modifier of latent congenital long-QT syndrome.
    Circulation. 2005 Aug 30;112(9):1251-8 PMID: 16116052
  12. Gating properties of SCN5A mutations and the response to mexiletine in long-QT syndrome type 3 patients.
    Circulation. 2007 Sep 4;116(10):1137-44 PMID: 17698727
  13. Sudden death associated with short-QT syndrome linked to mutations in HERG.
    Circulation. 2004 Jan 6;109(1):30-5 PMID: 14676148
  14. Effectiveness and limitations of beta-blocker therapy in congenital long-QT syndrome.
    Circulation. 2000 Feb 15;101(6):616-23 PMID: 10673253
  15. Long QT syndrome in neonates: conduction disorders associated with HERG mutations and sinus bradycardia with KCNQ1 mutations.
    J Am Coll Cardiol. 2004 Mar 3;43(5):826-30 PMID: 14998624
  16. Phenotypic characterization of a novel long-QT syndrome mutation (R1623Q) in the cardiac sodium channel.
    Circulation. 1998 Feb 24;97(7):640-4 PMID: 9495298
  17. Clinical practice. Long-QT syndrome.
    N Engl J Med. 2008 Jan 10;358(2):169-76 PMID: 18184962
  18. Electrophysiologic actions of high plasma concentrations of propranolol in human subjects.
    J Am Coll Cardiol. 1983 Dec;2(6):1134-40 PMID: 6630784
  19. Postmortem molecular analysis of SCN5A defects in sudden infant death syndrome.
    JAMA. 2001 Nov 14;286(18):2264-9 PMID: 11710892
  20. Sudden infant death syndrome: overview and update.
    Pediatr Dev Pathol. 2003 Mar-Apr;6(2):112-27 PMID: 12532258
  21. Cellular and molecular biology of voltage-gated sodium channels.
    Physiol Rev. 1992 Oct;72(4 Suppl):S15-48 PMID: 1332090
  22. Comparison of long-term follow-up of electrocardiographic features in Brugada syndrome between the SCN5A-positive probands and the SCN5A-negative probands.
    Am J Cardiol. 2007 Aug 15;100(4):649-55 PMID: 17697823
  23. Cardiac potassium channel dysfunction in sudden infant death syndrome.
    J Mol Cell Cardiol. 2008 Mar;44(3):571-81 PMID: 18222468
  24. Genotype-phenotype correlation in the long-QT syndrome: gene-specific triggers for life-threatening arrhythmias.
    Circulation. 2001 Jan 2;103(1):89-95 PMID: 11136691
  25. Long QT syndrome and life threatening arrhythmia in a newborn: molecular diagnosis and treatment response.
    Heart. 2004 Jan;90(1):13-6 PMID: 14676229
  26. A molecular link between the sudden infant death syndrome and the long-QT syndrome.
    N Engl J Med. 2000 Jul 27;343(4):262-7 PMID: 10911008
  27. Effects of flecainide in patients with new SCN5A mutation: mutation-specific therapy for long-QT syndrome?
    Circulation. 2000 Apr 11;101(14):1698-706 PMID: 10758053
  28. A de novo missense mutation (R1623Q) of the SCN5A gene in a Japanese girl with sporadic long QT sydrome. Mutations in brief no. 140. Online.
    Hum Mutat. 1998;11(6):481 PMID: 10200053
  29. Multiple mechanisms of Na+ channel--linked long-QT syndrome.
    Circ Res. 1996 May;78(5):916-24 PMID: 8620612
  30. Are some cases of sudden intrauterine unexplained death due to the long QT syndrome?
    Prenat Diagn. 2003 Dec 30;23(13):1097-8 PMID: 14692000
  31. Association of long QT syndrome loci and cardiac events among patients treated with beta-blockers.
    JAMA. 2004 Sep 15;292(11):1341-4 PMID: 15367556
  32. Targeted mutational analysis of the RyR2-encoded cardiac ryanodine receptor in sudden unexplained death: a molecular autopsy of 49 medical examiner/coroner's cases.
    Mayo Clin Proc. 2004 Nov;79(11):1380-4 PMID: 15544015
  33. Compendium of cardiac channel mutations in 541 consecutive unrelated patients referred for long QT syndrome genetic testing.
    Heart Rhythm. 2005 May;2(5):507-17 PMID: 15840476
  34. Long QT syndrome patients with mutations of the SCN5A and HERG genes have differential responses to Na+ channel blockade and to increases in heart rate. Implications for gene-specific therapy.
    Circulation. 1995 Dec 15;92(12):3381-6 PMID: 8521555
  35. Electrophysiological effects of high-dose propranolol in dogs: evidence in vivo for effects not mediated by the beta adrenoceptor.
    J Pharmacol Exp Ther. 1984 Apr;229(1):91-7 PMID: 6323694
  36. Neonatal long QT syndrome and sudden cardiac death.
    Prog Pediatr Cardiol. 2000 May 1;11(1):47-54 PMID: 10822189
  37. A novel and lethal de novo LQT-3 mutation in a newborn with distinct molecular pharmacology and therapeutic response.
    PLoS One. 2007 Dec 05;2(12):e1258 PMID: 18060054
  38. Normalization of ventricular repolarization with flecainide in long QT syndrome patients with SCN5A:DeltaKPQ mutation.
    Ann Noninvasive Electrocardiol. 2001 Apr;6(2):153-8 PMID: 11333173
  39. Prevalence of long-QT syndrome gene variants in sudden infant death syndrome.
    Circulation. 2007 Jan 23;115(3):361-7 PMID: 17210839
Article Info
Journal
Circulation. Arrhythmia and electrophysiology
Abbr.
Circ Arrhythm Electrophysiol
ISSN
1941-3084
Published
2008-12-00
Epub
2008-00-02
Pages
370-8
Language
English
Region
United States
NLM ID
101474365
PMCID
PMC2725366
Subset
IM
Grants
NHLBI NIH HHS · R01 HL083374 · United States
NHLBI NIH HHS · R01 HL083374-02 · United States
NHLBI NIH HHS · HL083374 · United States
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