首页> 外文期刊>European journal of human genetics: EJHG >Molecular genetics of exercise-induced polymorphic ventricular tachycardia: identification of three novel cardiac ryanodine receptor mutations and two common calsequestrin 2 amino-acid polymorphisms.
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Molecular genetics of exercise-induced polymorphic ventricular tachycardia: identification of three novel cardiac ryanodine receptor mutations and two common calsequestrin 2 amino-acid polymorphisms.

机译:运动诱发的多形性室性心动过速的分子遗传学:鉴定三个新颖的心脏瑞丹碱受体突变和两个常见的calsequestrin 2氨基酸多态性。

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摘要

Mutations of two myocardial calcium signaling molecules, ryanodine receptor 2 (RYR2) and calsequestrin 2 (CASQ2), may cause catecholaminergic polymorphic ventricular tachycardia (CPVT), a severe inherited arrhythmic disease manifesting with salvoes of exercise-induced bidirectional and polymorphic tachycardias. We screened 12 Finnish CPVT probands for mutations in these genes and identified three novel RYR2 mutations (V2306I, P4902L, R4959Q), which were absent in unaffected and control individuals. Although no obvious disease-causing mutations were identified in the CASQ2 gene, the molecular screening revealed two novel amino-acid polymorphisms (T66A and V76M). The frequencies of these polymorphisms in 185 unrelated probands with long QT syndrome and in 280 healthy blood donors were not significantly different. These data, combined with our previous findings, show that RYR2 mutations are present in at least 6/16 (38%) of the catecholaminergic polymorphic ventricular tachycardia families, while CASQ2 mutations must be a rare cause of CPVT.European Journal of Human Genetics (2003) 11, 888-891. doi:10.1038/sj.ejhg.5201061
机译:两种心肌钙信号分子,ryanodine受体2(RYR2)和calsequestrin 2(CASQ2)的突变可能导致儿茶酚胺能性多形性室性心动过速(CPVT),这是一种严重的遗传性心律失常性疾病,表现为运动诱发的双向和多态性心动过速的齐声。我们筛选了12个芬兰CPVT先证者中这些基因的突变,并确定了3个新的RYR2突变(V2306I,P4902L,R4959Q),这些突变在未受影响的个体和对照个体中均不存在。尽管在CASQ2基因中未发现明显的致病突变,但分子筛查发现了两个新的氨基酸多态性(T66A和V76M)。 185个长QT综合征无关亲证者和280名健康献血者中这些多态性的频率无显着差异。这些数据与我们先前的发现相结合,表明RYR2突变存在于至少6/16(38%)的儿茶酚胺多态性室性心动过速家族中,而CASQ2突变一定是CPVT的罕见原因。 2003)11,888-891。 doi:10.1038 / sj.ejhg.5201061

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