Abstract

BackgroundA common SCN5A polymorphism H558R (c.1673 A > G, rs1805124) improves sodium channel activity in mutated channels and known to be a genetic modifier of Brugada syndrome patients (BrS). We investigated clinical manifestations and underlying mechanisms of H558R in BrS.Methods and resultsWe genotyped H558R in 100 BrS (mean age 45 ± 14 years; 91 men) and 1875 controls (mean age 54 ± 18 years; 1546 men). We compared clinical parameters in BrS with and without H558R (H558R+ vs. H558R- group, N = 9 vs. 91). We also obtained right atrial sections from 30 patients during aortic aneurysm operations and compared SCN5A expression and methylation with or without H558R. H558R was less frequent in BrS than controls (9.0% vs. 19.2%, P = 0.028). The VF occurrence ratio was significantly lower (0% vs. 29.7%, P = 0.03) and spontaneous type 1 ECG was less observed in H558R+ than H558R- group (33.3% vs. 74.7%, P = 0.01). The SCN5A expression level was significantly higher and the methylation rate was significantly lower in sections with H558R (N = 10) than those without (0.98 ± 0.14 vs. 0.83 ± 0.19, P = 0.04; 0.7 ± 0.2% vs. 1.6 ± 0.1%, P = 0.004, respectively). In BrS with heterozygous H558R, the A allele mRNA expression was 1.38 fold higher than G allele expression.ConclusionThe SCN5A polymorphism H558R may be a modifier that protects against VF occurrence in BrS. The H558R decreased the SCN5A promoter methylation and increased the expression level in cardiac tissue. An allelic expression imbalance in BrS with a heterozygous H558R may also contribute to the protective effects in heterozygous mutations.

Highlights

  • A common Sodium voltage-gated channel alpha subunit 5 (SCN5A) polymorphism H558R (c.1673 A > G, rs1805124) improves sodium channel activity in mutated channels and known to be a genetic modifier of Brugada syndrome patients (BrS)

  • The minor G allele of rs1805124 was less frequent in BrS patients than in normal control cases (P = 0.028, odds ratio (OR): 1.97)

  • Kaplan–Meier event-free survival curves revealed that the rate of ventricular fibrillation (VF) events was significantly lower in the BrS patients without history of VF. (Additional file 2: Figure S1, P = 0.008 by log rank test) The VF-free

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Summary

Introduction

A common SCN5A polymorphism H558R (c.1673 A > G, rs1805124) improves sodium channel activity in mutated channels and known to be a genetic modifier of Brugada syndrome patients (BrS). A major causative gene of BrS is α-subunit of the cardiac sodium channel (Nav 1.5) encoded by the SCN5A gene, which is located on Matsumura et al Journal of Biomedical Science (2017) 24:91 and membrane trafficking [3,4,5,6]. They have reported that the presence of the minor allele A (H558R) improves ECG characteristics and the clinical phenotype among the carriers of a SCN5A mutation [7]. We investigated the effects of H558R on the clinical manifestations and underlying mechanisms in BrS

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Conclusion

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