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Ankyrin-B mutation causes type 4 long-QT cardiac arrhythmia and sudden cardiac death

机译:锚蛋白B突变导致4型长QT心律失常和心源性猝死

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Mutations in ion channels involved in the generation and termination of action potentials constitute a family of molecular defects that underlie fatal cardiac arrhythmias in inherited long-QT syndrome. We report here that a loss-of-function (E1425G) mutation in ankyrin-B (also known as ankyrin 2), a member of a family of versatile membrane adapters, causes dominantly inherited type 4 long-QT cardiac arrhythmia in humans. Mice heterozygous for a null mutation in ankyrin-B are haploinsuffi-cient and display arrhythmia similar to humans. Mutation of ankyrin-B results in disruption in the cellular organization of the sodium pump, the sodium/calcium exchanger, and inositol-1,4,5-trisphosphate receptors (all ankyrin-B-binding proteins), which reduces the targeting of these proteins to the transverse tubules as well as reducing overall protein level. Ankyrin-B mutation also leads to altered Ca~(2+) signalling in adult cardiomyocytes that results in extrasystoles, and provides a rationale for the arrhythmia. Thus, we identify a new mechanism for cardiac arrhythmia due to abnormal coordination of multiple functionally related ion channels and transporters.
机译:涉及动作电位产生和终止的离子通道突变构成了一系列遗传缺陷,这些遗传缺陷是遗传性长QT综合征中致命性心律不齐的基础。我们在这里报告说,锚蛋白-B(也称为锚蛋白2)中的功能丧失(E1425G)突变,是一种多功能膜接合剂家族的成员,会导致人类遗传性遗传的4型长QT心律失常。锚蛋白B无效突变的杂合小鼠是单倍型的,并且表现出与人类相似的心律不齐。锚蛋白B的突变导致钠泵,钠/钙交换剂和肌醇-1,4,5-三磷酸受体(所有锚蛋白B结合蛋白)的细胞组织受到破坏,从而降低了这些蛋白的靶向性蛋白质进入横管以及降低总蛋白质水平。锚蛋白-B突变还导致成年心肌细胞中Ca〜(2+)信号改变,导致收缩前期,并为心律失常提供了理论依据。因此,由于多种功能相关的离子通道和转运蛋白的异常协调,我们确定了一种心律不齐的新机制。

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