Denaturing high-performance liquid chromatography screening of the long QT syndrome-related cardiac sodium and potassium channel genes and identification of novel mutations and single nucleotide polymorphisms
- 10 September 2005
- journal article
- research article
- Published by Springer Nature in Journal of Human Genetics
- Vol. 50 (9) , 490-496
- https://doi.org/10.1007/s10038-005-0283-3
Abstract
Mutations in cardiac potassium and sodium channel genes are responsible for several hereditary cardiac arrhythmia syndromes. We established a denaturing high-performance liquid chromatography (DHPLC) protocol for rapid mutation screening of these genes, and reported mutations and variations identified by this method. We included 28 patients with Brugada syndrome, 4 with congenital long QT syndrome (LQTS), 11 with drug-induced LQTS, 4 with idiopathic ventricular fibrillation, and 50 normal volunteers. Polymerase chain reactions were performed to amplify the entire coding region of these genes. DHPLC was used to screen for heteroduplexes then DNA sequencing was performed. With this method, we identified the mutation(s) in all four patients with congenital LQTS (KCNQ1 A341V, KCNH2 N633D, KCNH2 2768Cdel and KCNE1 K70 N Y81C double mutations). We also identified the SCN5A A551T mutation in 1 of the 28 patients with Brugada syndrome. All the above-mentioned mutations were novel except KCNQ1 A341V. No mutations were identified in patients with drug-induced LQTS or idiopathic ventricular fibrillation. In total, 25 single nucleotide polymorphisms were identified, 10 of which were novel. In conclusion, DHPLC is a sensitive and rapid method for detection of cardiac sodium and potassium channel gene mutations.Keywords
This publication has 29 references indexed in Scilit:
- Sodium channel gene (SCN5A) mutations in 44 index patients with Brugada syndrome: Different incidences in familial and sporadic diseaseHuman Mutation, 2003
- DHPLC analysis of potassium ion channel genes in congenital long QT syndromeHuman Mutation, 2002
- Variant of SCN5A Sodium Channel Implicated in Risk of Cardiac ArrhythmiaScience, 2002
- Mutation detection in long QT syndrome: a comprehensive set of primers and PCR conditionsJournal of Medical Genetics, 2001
- Twenty single nucleotide polymorphisms (SNPs) and their allelic frequencies in four genes that are responsible for familial long QT syndrome in the Japanese populationJournal of Human Genetics, 2000
- High-throughput single-strand conformation polymorphism analysis by automated capillary electrophoresis: Robust multiplex analysis and pattern-based identification of allelic variantsHuman Mutation, 1999
- Novel missense mutation (G601S) of HERG in a Japanese long QT syndrome familyHuman Mutation, 1998
- Human KVLQT1 gene shows tissue-specific imprinting and encompasses Beckwith-Wiedemann syndrome chromosomal rearrangementsNature Genetics, 1997
- SCN5A mutations associated with an inherited cardiac arrhythmia, long QT syndromeCell, 1995
- Detection of polymorphisms of human DNA by gel electrophoresis as single-strand conformation polymorphisms.Proceedings of the National Academy of Sciences, 1989