首页> 外文期刊>Human Molecular Genetics >Quantitative RyR1 reduction and loss of calcium sensitivity of RyR1Q1970fsX16+A4329D cause cores and loss of muscle strength
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Quantitative RyR1 reduction and loss of calcium sensitivity of RyR1Q1970fsX16+A4329D cause cores and loss of muscle strength

机译:定量Ryr1减少和Ryr1Q1970FSX16 + A4329D的钙敏感性的损失导致核心和肌肉力量的丧失

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摘要

Recessive ryanodine receptor 1 (RYR1) mutations cause congenital myopathies including multiminicore disease (MmD), congenital fiber-type disproportion and centronuclear myopathy. We created a mouse model knocked-in for the Q1970fsX16+A4329D RYR1 mutations, which are isogenic with those identified in a severely affected child with MmD. During the first 20 weeks after birth the body weight and the spontaneous running distance of the mutant mice were 20% and 50% lower compared to wild-type littermates. Skeletal muscles from mutant mice contained 'cores' characterized by severe myofibrillar disorganization associated with misplacement of mitochondria. Furthermore, their muscles developed less force and had smaller electrically evoked calcium transients. Mutant RyR1 channels incorporated into lipid bilayers were less sensitive to calcium and caffeine, but no change in single-channel conductance was observed. Our results demonstrate that the phenotype of the RyR1Q1970fsX16+A4329D compound heterozygous mice recapitulates the clinical picture of multiminicore patients and provide evidence of the molecular mechanisms responsible for skeletal muscle defects.
机译:隐性ryanodine受体1(Ryr1)突变导致先天性肌病,包括多模疾病(MMD),先天性纤维型歧视和被集中的肌病。我们为Q1970FSX16 + A4329D Ryr1突变创建了一台鼠标模型,这些突变是具有在受MMD中严重受影响的儿童中鉴定的那些。在出生后的前20周内,与野生型凋落物相比,突变小鼠的体重和突变小鼠的自发距离为20%和50%。来自突变小鼠的骨骼肌含有“核心”,其特征在于与线粒体的错位相关的严重肌原纤维紊乱。此外,它们的肌肉产生的力量较小,并且具有较小的电诱发钙瞬变。掺入脂质双层的突变体Ryr1通道对钙和咖啡因的敏感性较小,但观察到单通道电导没有变化。我们的结果表明,Ryr1Q1970FSX16 + A4329D化合物杂合小鼠的表型概述了多Muminicore患者的临床图像,并提供了负责骨骼肌缺陷的分子机制的证据。

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  • 来源
    《Human Molecular Genetics》 |2019年第18期|共13页
  • 作者单位

    Basel Univ Hosp Dept Anaesthesia Hebelstr 20 CH-4031 Basel Switzerland;

    Basel Univ Hosp Dept Anaesthesia Hebelstr 20 CH-4031 Basel Switzerland;

    Basel Univ Hosp Dept Anaesthesia Hebelstr 20 CH-4031 Basel Switzerland;

    Basel Univ Hosp Dept Anaesthesia Hebelstr 20 CH-4031 Basel Switzerland;

    Univ Basel Ctr Transgen Models Mattenstr 22 CH-4002 Basel Switzerland;

    Univ Oxford Dept Pharmacol Mansfield Rd Oxford OX1 3QT England;

    Univ Oxford Dept Pharmacol Mansfield Rd Oxford OX1 3QT England;

    Univ Oxford Dept Pharmacol Mansfield Rd Oxford OX1 3QT England;

    Univ Oxford Dept Pharmacol Mansfield Rd Oxford OX1 3QT England;

    Univ Oxford Dept Pharmacol Mansfield Rd Oxford OX1 3QT England;

    Univ G dAnnunzio Ctr Res Ageing &

    Translat Med I-66100 Chieti Italy;

    Univ G dAnnunzio Ctr Res Ageing &

    Translat Med I-66100 Chieti Italy;

    Univ Oxford Dept Pharmacol Mansfield Rd Oxford OX1 3QT England;

    Basel Univ Hosp Dept Anaesthesia Hebelstr 20 CH-4031 Basel Switzerland;

    Basel Univ Hosp Dept Anaesthesia Hebelstr 20 CH-4031 Basel Switzerland;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 医学遗传学;
  • 关键词

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