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首页> 外文期刊>Journal of Molecular and Cellular Cardiology >A novel mutation in SCN5A, delQKP 1507-1509, causing long QT syndrome: role of Q1507 residue in sodium channel inactivation.
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A novel mutation in SCN5A, delQKP 1507-1509, causing long QT syndrome: role of Q1507 residue in sodium channel inactivation.

机译:SCN5A中的一个新突变,delQKP 1507-1509,引起了长时间的QT综合征:Q1507残基在钠通道失活中的作用。

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Inherited long QT syndrome (LQTS) is caused by mutations in six genes including SCN5A, encoding the alpha-subunit of the human cardiac voltage-dependent sodium channel hNa(v)1.5. In LQT3, various mutations in SCN5A were identified, which produce a gain of channel function. The aim of this study was to screen SCN5A for mutations in a family with the LQT3 phenotype and to analyze the consequences of the mutation on the channel function. By polymerase chain reaction-denaturating high performance liquid chromatography-sequencing, we identified a novel deletion in SCN5A, delQKP 1507-1509, in the DIII-DIV linker of the sodium channel. The hNa(v)1.5/delQKP1507-1509, hNa(v)1.5/delQ1507 and hNa(v)1.5/Q1507A mutants were constructed in vitro, mutant channels were expressed in the tsA201 human cell line and studied using the whole-cell configuration of the patch clamp technique. A persistent inward sodium current of 1-1.5% of maximum currents measured at -30 mV in all mutant sodium channels was recorded, which was nearly completely blocked by the sodium-channel blockers tetrodotoxin and lidocaine. The deletion mutants resulted in a significant shift of steady-state activation to more depolarized voltages. The delQ1507 showed a small shift of steady-state inactivation towards more negative potentials, whereas no significant shifts were observed in both steady-state activation and inactivation in Q1507A compared to the wild-type Na(v)1.5 sodium channels. The novel SCN5A mutation, delQKP, induces a residual current as previously shown for other SCN5A mutations causing LQTS. DelQKP shares the deletion of Q1507 with the formerly known delKPQ 1505-1507. Our data suggest that Q1507 plays an important role in fast sodium channel inactivation.
机译:遗传长QT综合征(LQTS)是由六个基因(包括SCN5A)的突变引起的,该基因编码人心脏电压依赖性钠通道hNa(v)1.5的α亚基。在LQT3中,确定了SCN5A中的各种突变,这些突变产生了通道功能。这项研究的目的是筛选SCN5A中具有LQT3表型的家庭中的突变,并分析该突变对通道功能的影响。通过聚合酶链反应-变性高效液相色谱-测序,我们在钠通道的DIII-DIV接头中发现了SCN5A delQKP 1507-1509中的新缺失。在体外构建hNa(v)1.5 / delQKP1507-1509,hNa(v)1.5 / delQ1507和hNa(v)1.5 / Q1507A突变体,在tsA201人细胞系中表达突变体通道,并使用全细胞配置进行研究膜片钳技术。记录到在所有突变的钠通道中,在-30 mV下测得的持久内向钠电流为最大电流的1-1.5%,该钠电流几乎完全被钠通道阻滞剂河豚毒素和利多卡因所阻断。缺失突变体导致稳态激活明显转移到更多的去极化电压。与野生型Na(v)1.5钠离子通道相比,delQ1507的稳态失活向负电势的变化很小,而在稳态激活和Q1507A失活均未观察到明显的变化。如先前针对引起LQTS的其他SCN5A突变所示,新的SCN5A突变delQKP会感应残留电流。 DelQKP与以前已知的delKPQ 1505-1507共享Q1507的删除。我们的数据表明Q1507在快速钠通道失活中起重要作用。

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