Key result
G1406R SCN5A mutation links to distinct phenotypes of Brugada syndrome and isolated conduction defects.
Why the study?
Mutations in SCN5A lead to diverse cardiac phenotypes, but the relationship between a single mutation and variable phenotypes like Brugada syndrome or isolated cardiac conduction defect is unclear.
Observational (n=45)
A single SCN5A missense mutation (G1406R) can lead to either Brugada syndrome or isolated cardiac conduction defect within the same family, suggesting the presence of modifier genes.
May guide SCN5A family screening; extends variant-phenotype data but leaves generalizability open.
BACKGROUND: The SCN5A gene encoding the human cardiac sodium channel alpha subunit plays a key role in cardiac electrophysiology. Mutations in SCN5A lead to a large spectrum of phenotypes, including long-QT syndrome, Brugada syndrome, and isolated progressive cardiac conduction defect (Lenègre disease). METHODS AND RESULTS: In the present study, we report the identification of a novel single SCN5A missense mutation causing either Brugada syndrome or an isolated cardiac conduction defect in the same family. A G-to-T mutation at position 4372 was identified by direct sequencing and was predicted to change a glycine for an arginine (G1406R) between the DIII-S5 and DIII-S6 domain of the sodium channel protein. Among 45 family members, 13 were carrying the G1406R SCN5A mutation. Four individuals from 2 family collateral branches showed typical Brugada phenotypes, including ST-segment elevation in the right precordial leads and right bundle branch block. One symptomatic patient with the Brugada phenotype required implantation of a cardioverter-defibrillator. Seven individuals from 3 other family collateral branches had isolated cardiac conduction defects but no Brugada phenotype. Three flecainide test were negative. One patient with an isolated cardiac conduction defect had an episode of syncope and required pacemaker implantation. An expression study of the G1406R-mutated SCN5A showed no detectable Na(+) current but normal protein trafficking. CONCLUSIONS: We conclude that the same mutation in the SCN5A gene can lead either to Brugada syndrome or to an isolated cardiac conduction defect. Our findings suggest that modifier gene(s) may influence the phenotypic consequences of a SCN5A mutation.
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Kyndt et al. (2001) conducted an observational in Brugada syndrome and isolated cardiac conduction defect (n=45). G1406R SCN5A mutation was evaluated on Phenotypic expression (Brugada syndrome or isolated cardiac conduction defect). The G1406R SCN5A mutation led to either Brugada syndrome (4 individuals) or isolated cardiac conduction defects (7 individuals) among 13 carriers in a single large family.
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