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首页> 外文期刊>International journal of molecular medicine >A novel mutation in the SCN5A gene contributes to arrhythmogenic characteristics of early repolarization syndrome
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A novel mutation in the SCN5A gene contributes to arrhythmogenic characteristics of early repolarization syndrome

机译:SCN5A基因的新突变有助于早期复极综合征的心律失常特征

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Several genetic variants have been associated with early repolarization syndrome?(ERS). However, the lack of functional validations of the mutant effects has limited the interpretation of genetic tests. In the present study, we identified and characterized a novel sodium channel, voltage gated, type?V alpha subunit?(SCN5A) mutation that was associated with ERS. A 67-year-old male proband suffering from recurrent syncope underwent a documented electrocardiogram?(ECG) for polymorphic ventricular tachycardia?(VT). It was noted that baseline 12-lead ECG exhibited a predominantly elevated ST-segment which mimicked acute myocardial ischemia in lead V2-V6, and the ECG also demonstrated J?waves in lead?Ⅱ, Ⅲ, aVF and V2-V6. Using genetic analysis, we noted that the proband carried a novel heterozygous missense mutation of A1055G in the SCN5A gene. Whole-cell configuration of patch-clamp analysis revealed that the mutation significantly decreased peak sodium current?(INa) density and shifted the steady-state inactivation curve of INa to a more negative potential. Confocal imaging suggested that in the mutant channel a defect of protein expression both on the cell membrane and in cytoplasm was present. The present study demonstrated that a novel heterozygous missense mutation of A1055G in SCN5A led to ‘loss-of function’ of the sodium channels, and we suggest that it accounts for the arrhythmogenic characteristics of ERS.
机译:几种基因变异与早期复极综合征(ERS)有关。然而,缺乏对突变体效应的功能验证限制了基因测试的解释。在本研究中,我们鉴定并鉴定了与ERS相关的新型钠通道,电压门控的“ Vα亚基”(SCN5A)突变。一名67岁的男性先证者患有反复性晕厥,接受了多形性室性心动过速(VT)的心电图记录(ECG)。值得注意的是,基线12导联心电图显示主要是ST段抬高,模仿了V2-V6导联的急性心肌缺血,并且ECG还显示了Ⅱ,Ⅲ,aVF和V2-V6导联的J波。使用遗传分析,我们注意到先证者在SCN5A基因中携带了一个新的A1055G杂合错义突变。膜片钳分析的全细胞配置表明,该突变显着降低了峰值钠电流?(INa)密度,并将INa的稳态失活曲线移动到了更大的负电位。共聚焦成像表明,在突变通道中,在细胞膜和细胞质中均存在蛋白质表达缺陷。本研究表明,SCN5A中一个新的A1055G杂合错义突变导致了钠通道的“功能丧失”,我们建议它可以解释ERS的心律失常特征。

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