首页> 外文期刊>The Journal of Clinical Investigation: The Official Journal of the American Society for Clinical Investigation >A sodium channel knockin mutant (NaV1.4-R669H) mouse model of hypokalemic periodic paralysis.
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A sodium channel knockin mutant (NaV1.4-R669H) mouse model of hypokalemic periodic paralysis.

机译:低钾血症周期性麻痹的钠通道敲入突变体 (NaV1.4-R669H) 小鼠模型。

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摘要

Hypokalemic periodic paralysis (HypoPP) is an ion channelopathy of skeletal muscle characterized by attacks of muscle weakness associated with low serum K+. HypoPP results from a transient failure of muscle fiber excitability. Mutations in the genes encoding a calcium channel (CaV1.1) and a sodium channel (NaV1.4) have been identified in HypoPP families. Mutations of NaV1.4 give rise to a heterogeneous group of muscle disorders, with gain-of-function defects causing myotonia or hyperkalemic periodic paralysis. To address the question of specificity for the allele encoding the NaV1.4-R669H variant as a cause of HypoPP and to produce a model system in which to characterize functional defects of the mutant channel and susceptibility to paralysis, we generated knockin mice carrying the ortholog of the gene encoding the NaV1.4-R669H variant (referred to herein as R669H mice). Homozygous R669H mice had a robust HypoPP phenotype, with transient loss of muscle excitability and weakness in low-K+ challenge, insensitivity to high-K+ challenge, dominant inheritance, and absence of myotonia. Recovery was sensitive to the Na+/K+-ATPase pump inhibitor ouabain. Affected fibers had an anomalous inward current at hyperpolarized potentials, consistent with the proposal that a leaky gating pore in R669H channels triggers attacks, whereas a reduction in the amplitude of action potentials implies additional loss-of-function changes for the mutant NaV1.4 channels.
机译:低钾性周期性麻痹 (HypoPP) 是一种骨骼肌离子通道病,其特征是与血清 K+ 低相关的肌无力发作。HypoPP 由肌纤维兴奋性短暂性衰竭引起。在 HypoPP 家族中已鉴定出编码钙通道 (CaV1.1) 和钠通道 (NaV1.4) 的基因突变。NaV1.4 突变引起一组异质性肌肉疾病,功能获得性缺陷导致肌强直或高钾血症周期性麻痹。为了解决编码 NaV1.4-R669H 变体的等位基因作为 HypoPP 原因的特异性问题,并产生一个模型系统来表征突变通道的功能缺陷和对麻痹的易感性,我们生成了携带编码 NaV1.4-R669H 变体的基因直系同源物的敲入小鼠(本文称为 R669H 小鼠)。纯合子 R669H 小鼠具有强大的 HypoPP 表型,在低 K+ 攻击中肌肉兴奋性和无力、对高 K+ 攻击不敏感、显性遗传和无肌强直。回收率对 Na+/K+-ATP 酶泵抑制剂 ouabain 敏感。受影响的纤维在超极化电位下具有异常的向内电流,这与R669H通道中泄漏的门控孔触发攻击的提议一致,而动作电位幅度的降低意味着突变NaV1.4通道的额外功能丧失变化。

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