首页> 外文期刊>Cardiovascular Research >A novel gain-of-function KCNJ2 mutation associated with short-QT syndrome impairs inward rectification of Kir2.1 currents
【24h】

A novel gain-of-function KCNJ2 mutation associated with short-QT syndrome impairs inward rectification of Kir2.1 currents

机译:与短QT综合征相关的新型功能获得性KCNJ2突变会损害Kir2.1电流的内向整流

获取原文
获取原文并翻译 | 示例
           

摘要

Aims Short-QT syndrome (SQTS) is a recently recognized disorder associated with atrial fibrillation (AF) and sudden death due to ventricular arrhythmias. Mutations in several ion channel genes have been linked to SQTS; however, the mechanism remains unclear. This study describes a novel heterozygous gain-of-function mutation in the inward rectifier potassium channel gene, KCNJ2, identified in SQTS.Methods and resultsWe studied an 8-year-old girl with a markedly short-QT interval (QT = 172 ms, QTc = 194 ms) who suffered from paroxysmal AF. Mutational analysis identified a novel heterozygous KCNJ2 mutation, M301K. Functional assays displayed no Kir2.1 currents when M301K channels were expressed alone. However, co-expression of wild-type (WT) with M301K resulted in larger outward currents than the WT at more than-30 mV. These results suggest a gain-of-function type modulation due to decreased inward rectification. Furthermore, we analysed the functional significance of the amino acid charge at M301 (neutral) by changing the residue. As with M301K, in M301R (positive), the homozygous channels were non-functional, whereas the heterozygous channels demonstrated decreased inward rectification. Meanwhile, the currents recorded in M301A (neutral) showed normal inward rectification under both homo-and heterozygous conditions. Heterozygous overexpression of WT and M301K in neonatal rat ventricular myocytes exhibited markedly shorter action potential durations than the WT alone. Conclusion In this study, we identified a novel KCNJ2 gain-of-function mutation, M301K, associated with SQTS. Functional assays revealed no functional currents in the homozygous channels, whereas impaired inward rectification demonstrated under the heterozygous condition resulted in larger outward currents, which is a novel mechanism predisposing SQTS.
机译:目标短QT综合征(SQTS)是最近认识到的与房颤(AF)和室性心律不齐导致的猝死相关的疾病。几个离子通道基因的突变与SQTS相关;但是,机制尚不清楚。这项研究描述了在SQTS中鉴定出的内向整流钾通道基因KCNJ2中的一种新的杂合功能获得突变。方法和结果我们研究了一个QT间隔很短(QT = 172 ms, QTc = 194 ms)患有阵发性AF。突变分析确定了一个新的杂合KCNJ2突变M301K。当单独表达M301K通道时,功能分析未显示Kir2.1电流。但是,野生型(WT)与M301K的共表达在超过30 mV时比WT产生更大的向外电流。这些结果表明由于向内整流的减少,导致了功能增益型调制。此外,我们通过改变残基来分析M301(中性)处氨基酸电荷的功能意义。与M301K一样,在M301R(阳性)中,纯合子通道是无功能的,而杂合子通道则显示出向内的整流作用降低。同时,M301A(中性)中记录的电流在纯合和杂合条件下均显示正常的内向整流。 WT和M301K在新生大鼠心室肌细胞中的杂合子过表达比单独的WT表现出明显更短的动作电位持续时间。结论在这项研究中,我们鉴定了一种与SQTS相关的新型KCNJ2功能获得突变M301K。功能测定显示纯合子通道中没有功能性电流,而在杂合性条件下显示出的向内整流能力受损导致较大的外向电流,这是诱发SQTS的新机制。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号