The Molecular Ggenetics of the Long QT Syndrome: Genes Causing Fainting and Sudden Death
- 1 February 1998
- journal article
- review article
- Published by Annual Reviews in Annual Review of Medicine
- Vol. 49 (1), 263-274
- https://doi.org/10.1146/annurev.med.49.1.263
Abstract
The congenital long QT syndrome is an autosomal-dominant genetic disorder of cardiac electrical repolarization. It is caused by mutations of at least six genes, of which four, all encoding for cardiac ion channels, have been identified: KVLQT1, HERG, and Min K encode for cardiac potassium ion channels, and SCN5A encodes for the cardiac sodium ion channel. In each case the altered ion channel function produces prolongation of the action potential and propensity to torsade de pointes ventricular tachycardia. A fifth gene locus is known to be on chromosome 4, but the gene has not been isolated. At least one other gene must exist, and there may be several more. Long QT syndrome is a frequent but often overlooked cause of unexpected syncope and sudden death in children and young adults. Characteristic findings are prolongation of the QT interval and T wave abnormalities on the electrocardiogram. However, the QT interval at presentation is normal about 10% of the time and just borderline prolonged another 30%, so diagnosis may be difficult. Symptoms are syncope and sudden death, typically occurring during exercise or emotional upset. The manifestations vary, depending on the genotype present. The phenotype also probably varies, depending on the specific mutation involved. Phenotypic heterogeneity is also caused by variable penetrance and expressivity.Keywords
This publication has 41 references indexed in Scilit:
- Coassembly of KVLQT1 and minK (IsK) proteins to form cardiac IKS potassium channelNature, 1996
- KvLQT1 and IsK (minK) proteins associate to form the IKS cardiac potassium currentNature, 1996
- Multiple Mechanisms of Na + Channel– Linked Long-QT SyndromeCirculation Research, 1996
- Spectrum of HERG K+-channel dysfunction in an inherited cardiac arrhythmia.Proceedings of the National Academy of Sciences, 1996
- Positional cloning of a novel potassium channel gene: KVLQT1 mutations cause cardiac arrhythmiasNature Genetics, 1996
- ECG T-Wave Patterns in Genetically Distinct Forms of the Hereditary Long QT SyndromeCirculation, 1995
- SCN5A mutations associated with an inherited cardiac arrhythmia, long QT syndromeCell, 1995
- A molecular basis for cardiac arrhythmia: HERG mutations cause long QT syndromeCell, 1995
- Heterogeneity in the Inherited Long QT SyndromeJournal of Cardiovascular Electrophysiology, 1995
- Congenital deaf-mutism, functional heart disease with prolongation of the Q-T interval, and sudden deathAmerican Heart Journal, 1957