Analysis of SCN5A Gene Variants in East Slovak Patients with Cardiomyopathy

Objective Mutations in ion channels genes are potential cause of cardiomyopathy. The SCN5A gene (sodium channel, voltage gated, type V alpha subunit gene; 3p21) belongs to the family of cardiac sodium channel genes. Mutations in SCN5A gene lead to decreased Na+ current and ion unbalance. The SCN5A g...

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Veröffentlicht in:Journal of clinical laboratory analysis 2017-03, Vol.31 (2), p.e22037-n/a
Hauptverfasser: Priganc, Mariana, Zigová, Michaela, Boroňová, Iveta, Bernasovská, Jarmila, Dojčáková, Dana, Szabadosová, Viktória, Mydlárová Blaščáková, Marta, Tóthová, Iveta, Kmec, Ján, Bernasovský, Ivan
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Sprache:eng
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Zusammenfassung:Objective Mutations in ion channels genes are potential cause of cardiomyopathy. The SCN5A gene (sodium channel, voltage gated, type V alpha subunit gene; 3p21) belongs to the family of cardiac sodium channel genes. Mutations in SCN5A gene lead to decreased Na+ current and ion unbalance. The SCN5A gene mutations are found in approximately 2% of patients with dilated cardiomyopathy (DCM), and they may be potential phenotype modifiers in hypertrophic cardiomyopathy (HCM). The role of SCN5A gene mutations in cardiomyopathy is not fully elucidated. Methods Three selected exons (12, 20, and 21) of the SCN5A gene in the cohort of 58 East Slovak patients with dilated and HCM were analyzed by the Sanger sequencing method in order to detect etiopathogenic mutations associated with dilated and HCM. Results The mutation screening of three selected exons of SCN5A gene in the cohort of 27 DCM, 12 HCM patients, and 16 controls identified 10 missense genetic variants. Three of them (T1247I, A1260D, and G1262S), all in exon 21 of the SCN5A gene, were potentially damaging and disease‐causing variants. Conclusion Data from this study demonstrate that SCN5A gene variants have important role in the etiopathogenesis of dilated and HCM.
ISSN:0887-8013
1098-2825
DOI:10.1002/jcla.22037