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Targeted point mutagenesis of mouse Kcnq1: phenotypic analysis of mice with point mutations that cause Romano-Ward syndrome in humans.

机译:小鼠Kcnq1的目标点诱变:具有导致人类Romano-Ward综合征的点突变的小鼠的表型分析。

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摘要

Inherited long QT syndrome is most frequently associated with mutations in KCNQ1, which encodes the primary subunit of a potassium channel. Patients with mutations in KCNQ1 may show only the cardiac defect (Romano-Ward syndrome or RWS) or may also have severe deafness (Jervell and Lange-Nielsen syndrome or JLNS). Targeted disruption of mouse Kcnq1 models JLNS in that mice are deaf and show abnormal ECGs. However, the phenotype is broader than that seen in patients. Most dramatically, the inner ear defects result in a severe hyperactivity/circling behavior, which may influence cardiac function. To understand the etiology of the cardiac phenotype in these mice and to generate a potentially more useful model system, we generated new mouse lines by introducing point mutations associated with RWS. The A340E line phenocopies RWS: the repolarization phenotype is inherited in a dominant manner and is observed independent of any inner ear defect. The T311I line phenocopies JLNS, with deafness associated with inner hair cell malfunction.
机译:遗传的长QT综合征最常与KCNQ1中的突变相关,后者编码钾通道的主要亚基。 KCNQ1突变的患者可能仅表现出心脏缺陷(Romano-Ward综合征或RWS),也可能患有严重的耳聋(Jervell和Lange-Nielsen综合征或JLNS)。小鼠Kcnq1模型JLNS的定向破坏在于小鼠是聋的并显示异常的心电图。但是,该表型比患者中的表型更广泛。最明显的是,内耳缺陷会导致严重的活动过度/循环行为,这可能会影响心脏功能。为了了解这些小鼠的心脏表型的病因并生成可能更有用的模型系统,我们通过引入与RWS相关的点突变来产生新的小鼠系。 A340E线表型是RWS:复极化表型以显性方式遗传,并且独立于任何内耳缺损而观察到。 T311I线表型为JLNS,耳聋与内部毛细胞功能异常有关。

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