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首页> 外文期刊>Heart rhythm: the official journal of the Heart Rhythm Society >Transient outward current (I(to)) gain-of-function mutations in the KCND3-encoded Kv4.3 potassium channel and Brugada syndrome.
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Transient outward current (I(to)) gain-of-function mutations in the KCND3-encoded Kv4.3 potassium channel and Brugada syndrome.

机译:KCND3编码的Kv4.3钾通道和Brugada综合征中的瞬时外向电流(I(to))功能获得突变。

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摘要

BACKGROUND: Brugada syndrome (BrS) is a sudden death-predisposing genetic condition characterized electrocardiographically by ST segment elevation in the leads V(1)-V(3). Given the prominent role of the transient outward current (I(to)) in BrS pathogenesis, we hypothesized that rare gain-of-function mutations in KCND3 may serve as a pathogenic substrate for BrS. METHODS: Comprehensive mutational analysis of KCND3-encoded Kv4.3 (I(to)) was conducted using polymerase chain reaction, denaturing high performance liquid chromatography, and direct sequencing of DNA derived from 86 unrelated BrS1-8 genotype-negative BrS patients. DNA from 780 healthy individuals was examined to assess allelic frequency for nonsynonymous variants. Putative BrS-associated Kv4.3 mutations were engineered and coexpressed with wild-type KChIP2 in HEK293 cells. Wild-type and mutant I(to) ion currents were recorded using whole-cell patch clamp. RESULTS: Two BrS1-8 genotype-negative cases possessed novel Kv4.3 missense mutations. Both Kv4.3-L450F and Kv4.3-G600R were absent in 1,560 reference alleles and involved residues highly conserved across species. Both Kv4.3-L450F and Kv4.3-G600R demonstrated a gain-of-function phenotype, increasing peak I(to) current density by 146.2% (n = 15, P <.05) and 50.4% (n = 15, P <.05), respectively. Simulations using a Luo-Rudy II action potential (AP) model demonstrated the stable loss of the AP dome as a result of the increased I(to) maximal conductance associated with the heterozygous expression of either L450F or G600R. CONCLUSIONS: These findings provide the first molecular and functional evidence implicating novel KCND3 gain-of-function mutations in the pathogenesis and phenotypic expression of BrS, with the potential for a lethal arrhythmia being precipitated by a genetically enhanced I(to) current gradient within the right ventricle where KCND3 expression is the highest.
机译:背景:Brugada综合征(BrS)是一种猝死易感遗传病,在心电图上以V(1)-V(3)导线中ST段抬高为特征。鉴于瞬时向外电流(I(to))在BrS发病机理中的重要作用,我们假设KCND3中罕见的功能获得突变可能是BrS的致病底物。方法:使用聚合酶链反应,变性高效液相色谱和直接测序来自86名无关BrS1-8基因型阴性BrS患者的DNA,对KCND3编码的Kv4.3(I(to))进行了全面的突变分析。检查了来自780名健康个体的DNA,以评估非同义变体的等位基因频率。与假定的BrS相关的Kv4.3突变经过工程改造,并与野生型KChIP2在HEK293细胞中共表达。使用全细胞膜片钳记录野生型和突变型I(to)离子电流。结果:2例BrS1-8基因型阴性病例具有新颖的Kv4.3错义突变。 1,560个参考等位基因中均不存在Kv4.3-L450F和Kv4.3-G600R,并且涉及在物种间高度保守的残基。 Kv4.3-L450F和Kv4.3-G600R均表现出功能增益表型,峰值I(to)电流密度分别提高了146.2%(n = 15,P <.05)和50.4%(n = 15, P <.05)。使用Luo-Rudy II动作电位(AP)模型进行的仿真显示,由于与L450F或G600R的杂合子表达相关的I(to)最大电导增加,导致AP球顶稳定丢失。结论:这些发现提供了第一个分子和功能证据,涉及BrS的发病机理和表型表达中的新型KCND3功能获得性突变,而致死性心律失常的可能性是由于遗传上增强的I(to)电流梯度引起的。右心室,其中KCND3表达最高。

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