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CLCN1 CLCN1 Myotonia congenita mutation with a variable pattern of inheritance suggests a novel mechanism of dominant myotonia

机译:Clcn1 Clcn1肌阳尼科尼氏菌具有可变遗传模式的突变表明了占主导地位肌室的新机制

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ABSTRACT Introduction : Mutations in CLCN1 cause recessive or dominant forms of myotonia congenita (MC). Some mutations have been found to exhibit both patterns of inheritance but the mechanism explaining this behavior is unknown. Methods : A known recessive missense mutation, A493E, was identified in a family with dominant MC. The mutant p.A493E alone or in co‐expression with wild‐type (WT) ClC‐1 was expressed in Xenopus oocytes. Currents were measured and biochemical assays were performed. Results : The mutant showed no significant activity and reduced total and plasma membrane (PM) protein levels. Co‐expression with the mutant reduced the activity and PM levels of an engineered lower expression variant of ClC‐1, whereas no effect was observed on a higher expression variant. Discussion : Our results suggest that the dominant effect of some CLCN1 mutations showing recessive or dominant inheritance patterns may be due to a dose‐dependent defect in PM delivery of the WT channel. Muscle Nerve 58 : 157–160, 2018
机译:摘要介绍:CLCN1中的突变导致隐性或显性形式的肌肌肌肌肌肌肌肌肌腱(MC)。已经发现一些突变表现出遗传模式,但解释这种行为的机制是未知的。方法:在具有主导MC的家庭中鉴定了一种已知的隐性畸形突变A493e。单独或用野生型(WT)CLC-1的突变体P.A493E以Xenopus卵母细胞表达。测量电流并进行生物化学测定。结果:突变体显示出明显的活性和总量减少和血浆膜(PM)蛋白质水平。与突变体的共表达降低了CLC-1的工程化低表达变体的活性和PM水平,而在更高的表达变体上没有观察到任何效果。讨论:我们的研究结果表明,显示隐性或显性遗传模式的一些CLCN1突变的显性效果可能是由于PM递送WT通道的剂量依赖性缺陷。肌神经58:157-160,2018

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