Genetic basis and molecular mechanism for idiopathic ventricular fibrillation

被引:0
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作者
Qiuyun Chen
Glenn E. Kirsch
Danmei Zhang
Ramon Brugada
Josep Brugada
Pedro Brugada
Domenico Potenza
Angel Moya
Martin Borggrefe
Günter Breithardt
Rocio Ortiz-Lopez
Zhiqing Wang
Charles Antzelevitch
Richard E. O'Brien
Eric Schulze-Bahr
Mark T. Keating
Jeffrey A. Towbin
Qing Wang
机构
[1] Baylor College of Medicine,Department of Pediatrics (Cardiology)
[2] Medicine (Cardiology),Cardiology Department
[3] Baylor College of Medicine,Department of Cardiology
[4] Cardiovasascular Sciences,Department of Cardiology and Angiology
[5] Baylor College of Medicine,Department of Human Genetics and Medicine
[6] Molecular and Human Genetics,undefined
[7] Baylor College of Medicine,undefined
[8] The Rammelkamp Center for Research,undefined
[9] MetroHealth Campus,undefined
[10] Case Western Reserve University,undefined
[11] Arrhythmia Unit,undefined
[12] Cardiovascular Institute,undefined
[13] Hospital Clinic,undefined
[14] University of Barcelona,undefined
[15] The Cardiovascular Center,undefined
[16] OLV Hospital,undefined
[17] IRCCS Casa Sollievo della Sofferenza,undefined
[18] Hospital Vall d'Hebron,undefined
[19] Institute of Arteriosclerosis Research,undefined
[20] Hospital of the University of Munster,undefined
[21] Masonic Medical Research Laboratory,undefined
[22] Howard Hughes Medical Institute,undefined
[23] University of Utah,undefined
来源
Nature | 1998年 / 392卷
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摘要
Ventricular fibrillation causes more than 300, 000 sudden deaths each year in the USA alone1,2. In approximately 5–12% of these cases, there are no demonstrable cardiac or non-cardiac causes to account for the episode, which is therefore classified as idiopathic ventricular fibrillation (IVF)3,4,5,6. A distinct group of IVF patients has been found to present with a characteristic electrocardiographic pattern7,8,9,10,11,12,13,14,15. Because of the small size of most pedigrees and the high incidence of sudden death, however, molecular genetic studies of IVF have not yet been done. Because IVF causes cardiac rhythm disturbance, we investigated whether malfunction of ion channels could cause the disorder by studying mutations in the cardiac sodium channel gene SCN5A. We have now identified a missense mutation, a splice-donor mutation, and a frameshift mutation in the coding region of SCN5A in three IVF families. We show that sodium channels with the missense mutation recover from inactivation more rapidly than normal and that the frameshift mutation causes the sodium channel to be non-functional. Our results indicate that mutations in cardiac ion-channel genes contribute to the risk of developing IVF.
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页码:293 / 296
页数:3
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