首页> 外文期刊>BMC Medical Genetics >Protective effect of KCNH2 single nucleotide polymorphism K897T in LQTS families and identification of novel KCNQ1 and KCNH2 mutations
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Protective effect of KCNH2 single nucleotide polymorphism K897T in LQTS families and identification of novel KCNQ1 and KCNH2 mutations

机译:KCNH2单核苷酸多态性K897T在LQTS家族中的保护作用以及新的KCNQ1和KCNH2突变的鉴定

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Background KCNQ1 and KCNH2 are the two most common potassium channel genes causing long QT syndrome (LQTS), an inherited cardiac arrhythmia featured by QT prolongation and increased risks of developing torsade de pointes and sudden death. To investigate the disease expressivity, this study aimed to identify mutations and common variants that can modify LQTS phenotype. Methods In this study, a cohort of 112 LQTS families were investigated. Among them two large LQTS families linkage analysis with markers spanning known LQTS genes was carried out to identify the specific gene for mutational analysis. All exons and exon-intron boundaries of KCNH2 and KCNQ1 were sequenced for mutational analysis. Results LQTS-associated mutations were identified in eight of 112 families. Two novel mutations, L187P in KCNQ1 and 2020insAG in KCNH2 , were identified. Furthermore, in another LQTS family we found that KCNH2 mutation A490T co-segregated with a common SNP K897T in KCNH2 . KCNH2 SNP K897T was reported to exert a modifying effect on QTc, but it remains controversial whether it confers a risk or protective effect. Notably, we have found that SNP K897T interacts with mutation A490T in cis orientation. Seven carriers for A490T and the minor allele T of SNP K897T showed shorter QTc and fewer symptoms than carriers with A490T or A490P ( P Conclusion Our family-based approach provides support that KCNH2 SNP K897T confers a protective effect on LQTS patients. Our study is the first to investigate the effect of SNP K897T on another KCNH2 mutation located in cis orientation. Together, our results expand the mutational and clinical spectrum of LQTS and provide insights into the factors that determine QT prolongation associated with increased risk of ventricular tachycardia and sudden death.
机译:背景KCNQ1和KCNH2是引起长QT综合征(LQTS)的两个最常见的钾通道基因,长QT综合征是一种以QT延长为特征的遗传性心律失常,发展尖端扭转型室速和猝死的风险增加。为了研究疾病的表达,本研究旨在鉴定可修饰LQTS表型的突变和常见变异。方法在本研究中,调查了112个LQTS家庭。其中,进行了两个大型LQTS家族连锁分析,并使用跨越已知LQTS基因的标记进行了分析,以鉴定用于突变分析的特定基因。对KCNH2和KCNQ1的所有外显子和外显子-内含子边界进行测序,以进行突变分析。结果在112个家庭中的8个家庭中发现了与LQTS相关的突变。鉴定出两个新的突变,KCNQ1中的L187P和KCNH2中的2020insAG。此外,在另一个LQTS家族中,我们发现KCNH2突变A490T与KCNH2中常见的SNP K897T共分离。据报道,KCNH2 SNP K897T对QTc发挥修饰作用,但是否赋予风险或保护作用仍存在争议。值得注意的是,我们发现SNP K897T与A490T突变以顺式相互作用。与A490T或A490P的携带者相比,七种A490T的携带者和SNP K897T的次要等位基因T表现出更短的QTc和更少的症状(P结论我们的基于家庭的方法支持KCNH2 SNP K897T对LQTS患者具有保护作用。首先,我们研究了SNP K897T对另一个位于顺式方向的KCNH2突变的影响,我们的研究结果共同扩大了LQTS的突变和临床范围,并为确定QT延长与室性心动过速和猝死风险增加相关的因素提供了见识。

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