首页> 外文期刊>Annals of noninvasive electrocardiology: the official journal of the International Society for Holter and Noninvasive Electrocardiology, Inc >Compound and heterozygous mutations of KCNQ1 KCNQ1 in long QT syndrome with familial history of unexplained sudden death: Identified by analysis of whole exome sequencing and predisposing genes
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Compound and heterozygous mutations of KCNQ1 KCNQ1 in long QT syndrome with familial history of unexplained sudden death: Identified by analysis of whole exome sequencing and predisposing genes

机译:KCNQ1 KCNQ1的化合物和杂合突变在长QT综合征,具有绝缘突然死亡的家族史:通过分析整体exome测序和预测基因来鉴定

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Abstract Introduction Long QT syndrome (LQTS) increases the risk of life‐threatening arrhythmia in young individuals with structurally normal hearts. Sixteen genes such as the KCNQ1, KCNH2, and SCN5A have been reported for association with LQTS. Case presentation We identified the compound heterozygous mutations in the KCNQ1 gene at c. G527A (p.W176X) and c.G1765A (p.G589S) predicted as “damaging.” The in‐silico analysis showed that when compared to the characteristics of mRNA and protein of wild‐type KCNQ1, the mRNA of c.G527A mutation was significantly different in the centroid secondary structure. The subunit coded by W176X would lose the transmembrane domains S3–S6 and helices A‐D. The protein secondary structure of G589S was slightly shortened in helix structure; the protein physics‐chemical parameters of W176X and G589S significantly and slightly changed, respectively. Conclusions The compound heterozygous mutations of W176X and G589S coexisting in KCNQ1 gene of homologous chromosomes, resulting in more severe phenotype, are the likely pathogenic and genetic risks of LQTS and USD in this Chinese family.
机译:摘要介绍长QT综合征(LQTS)增加了在结构正常的心中的年轻人危及生命的心律失常的风险。据报道,诸如KCNQ1,KCNH 2和SCN5A的十六个基因与LQT相关联。案例介绍我们在C的KCNQ1基因中鉴定了化合物杂合酶突变。 G527A(P.W176X)和C.G1765A(P.G589S)预测为“损坏”。硅基分析显示,与野生型KCNQ1的mRNA和蛋白质的特征相比,C.G527A突变的mRNA在质心二级结构中显着差异。由W176X编码的子单元将丢失跨膜域S3-S6和螺旋A-D。螺旋结构略微缩短G589s的蛋白质二次结构;蛋白质物理学 - 化学参数分别显着和略微改变。结论W176X和G589S在同源染色体的KCNQ1基因中共存的化合物杂合突变,导致更严重的表型,是这家中国家庭的致病性和遗传风险和USD的可能性和遗传风险。

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