首页> 外文期刊>The Canadian journal of cardiology >Loss of function associated with novel mutations of the SCN5A gene in patients with Brugada syndrome.
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Loss of function associated with novel mutations of the SCN5A gene in patients with Brugada syndrome.

机译:Brugada综合征患者与SCN5A基因新突变相关的功能丧失。

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BACKGROUND: Ventricular fibrillation is one of the leading causes of death in North America. Brugada syndrome is characterized by ST segment elevation on the right precordial leads V1 through V3 and right bundle branch block, and may cause sudden death. Mutations in the SCN5A gene encoding the cardiac voltage-gated Na+ channel (hNav1.5) are associated with Brugada syndrome. OBJECTIVES: In this study, three novel mutations on the SCN5A gene were identified and characterized in different patients with Brugada syndrome. METHODS: Blood samples were collected from patients with Brugada syndrome for gene screening. Mutations found on the SCN5A gene in these patients were reproduced in vitro on hNav1.5 background. Wild type and mutant channels expressed in tsA201 cells were characterized using the patch clamp technique in whole cell configuration and/or confocal microscopy. RESULTS: No current could be recorded from cells expressing the hNav1.5/G1740R mutant, incubated at 37 degrees C. However, at a lower incubation temperature (22 degrees C), macroscopic Na+ currents were recorded. Confocal microscopy study confirmed that at 37 degrees C, hNav1.5/G1740R mutant channels were retained in the endoplasmic reticulum. The E473X and N1774+12X mutants produced truncated proteins and did not express any currents; however, coexpression of each of these mutants with wild type channels shows 50% reduction of Na+ currents. CONCLUSION: This study confirms that the loss of function of cardiac Na+ channels is the basis of the Brugada syndrome clinical phenotype.
机译:背景:心室纤颤是北美的主要死亡原因之一。 Brugada综合征的特征是右心前导联V1至V3和右束支传导阻滞的ST段抬高,并可能导致猝死。编码心脏电压门控Na +通道(hNav1.5)的SCN5A基因突变与Brugada综合征相关。目的:在这项研究中,SCN5A基因的三个新突变在不同的布鲁格达综合征患者中得到鉴定和鉴定。方法:从Brugada综合征患者的血液样本中进行基因筛选。这些患者中SCN5A基因上发现的突变是在hNav1.5背景下体外复制的。使用膜片钳技术在全细胞配置和/或共聚焦显微镜中表征了在tsA201细胞中表达的野生型和突变型通道。结果:在37℃下孵育的表达hNav1.5 / G1740R突变体的细胞中未记录到电流。但是,在较低的孵育温度(22℃)下,记录到宏观的Na +电流。共聚焦显微镜研究证实,在37摄氏度时,hNav1.5 / G1740R突变体通道保留在内质网中。 E473X和N1774 + 12X突变体产生截短的蛋白,不表达任何电流。但是,这些突变体与野生型通道的共表达显示Na +电流降低了50%。结论:这项研究证实心脏Na +通道功能的丧失是Brugada综合征临床表型的基础。

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