Literature DB >> 24112685

Cardiac channelopathies associated with infantile fatal ventricular arrhythmias: from the cradle to the bench.

Koichi Kato1, Takeru Makiyama, Jie Wu, Wei-Guang Ding, Hiromi Kimura, Nobu Naiki, Seiko Ohno, Hideki Itoh, Toshio Nakanishi, Hiroshi Matsuura, Minoru Horie.   

Abstract

BACKGROUND: Fatal ventricular arrhythmias in the early period of life have been associated with cardiac channelopathies for decades, and postmortem analyses in SIDS victims have provided evidence of this association. However, the prevalence and functional properties of cardiac ion channel mutations in infantile fatal arrhythmia cases are not clear. METHODS AND
RESULTS: Seven infants with potentially lethal arrhythmias at age < 1 year (5 males, age of onset 44.1 ± 72.1 days) were genetically analyzed for KCNQ1, KCNH2, KCNE1-5, KCNJ2, SCN5A, GJA5, and CALM1 by using denaturing high-performance liquid chromatography and direct sequencing. Whole-cell currents of wildtype and mutant channels were recorded and analyzed in Chinese hamster ovary cells transfected with SCN5A and KCNH2 cDNA. In 5 of 7 patients, we identified 4 mutations (p.N1774D, p.T290fsX53, p.F1486del and p.N406K) in SCN5A, and 1 mutation (p.G628D) in KCNH2. N1774D, F1486del, and N406K in SCN5A displayed tetrodotoxin-sensitive persistent late Na(+) currents. By contrast, SCN5A-T290fsX53 was nonfunctional. KCNH2-G628D exhibited loss of channel function.
CONCLUSION: Genetic screening of 7 patients was used to demonstrate the high prevalence of cardiac channelopathies. Functional assays revealed both gain and loss of channel function in SCN5A mutations, as well as loss of function associated with the KCNH2 mutation.
© 2014 Wiley Periodicals, Inc.

Entities:  

Keywords:  Brugada syndrome; KCNH2; SCN5A; SIDS; long-QT syndrome; ventricular arrhythmia

Mesh:

Substances:

Year:  2013        PMID: 24112685     DOI: 10.1111/jce.12270

Source DB:  PubMed          Journal:  J Cardiovasc Electrophysiol        ISSN: 1045-3873


  12 in total

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Authors:  Brett M Kroncke; Tao Yang; Dan M Roden
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Review 2.  Dysfunctional Nav1.5 channels due to SCN5A mutations.

Authors:  Dan Han; Hui Tan; Chaofeng Sun; Guoliang Li
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