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一种由于 Ryr1 基因突变的复合杂合导致的先天性肌病的小鼠模型中眼外肌功能障碍的分子基础。

Molecular basis of impaired extraocular muscle function in a mouse model of congenital myopathy due to compound heterozygous Ryr1 mutations.

机构信息

Departments of Biomedicine, Basel University Hospital, 4031 Basel, Switzerland.

Department of Life Science and Biotechnology, University of Ferrara, 44100 Ferrara, Italy.

出版信息

Hum Mol Genet. 2020 May 28;29(8):1330-1339. doi: 10.1093/hmg/ddaa056.

Abstract

Mutations in the RYR1 gene are the most common cause of human congenital myopathies, and patients with recessive mutations are severely affected and often display ptosis and/or ophthalmoplegia. In order to gain insight into the mechanism leading to extraocular muscle (EOM) involvement, we investigated the biochemical, structural and physiological properties of eye muscles from mouse models we created knocked-in for Ryr1 mutations. Ex vivo force production in EOMs from compound heterozygous RyR1p.Q1970fsX16+p.A4329D mutant mice was significantly reduced compared with that observed in wild-type, single heterozygous mutant carriers or homozygous RyR1p.A4329D mice. The decrease in muscle force was also accompanied by approximately a 40% reduction in RyR1 protein content, a decrease in electrically evoked calcium transients, disorganization of the muscle ultrastructure and a decrease in the number of calcium release units. Unexpectedly, the superfast and ocular-muscle-specific myosin heavy chain-EO isoform was almost undetectable in RyR1p.Q1970fsX16+p.A4329D mutant mice. The results of this study show for the first time that the EOM phenotype caused by the RyR1p.Q1970fsX16+p.A4329D compound heterozygous Ryr1 mutations is complex and due to a combination of modifications including a direct effect on the macromolecular complex involved in calcium release and indirect effects on the expression of myosin heavy chain isoforms.

摘要

RYR1 基因突变是人类先天性肌病的最常见原因,隐性突变患者受影响严重,常表现为眼睑下垂和/或眼肌麻痹。为了深入了解导致眼外肌(EOM)受累的机制,我们研究了我们创建的 Ryr1 基因突变敲入小鼠模型的生化、结构和生理特性。与野生型、单杂合突变携带者或纯合 RyR1p.A4329D 小鼠相比,复合杂合 RyR1p.Q1970fsX16+p.A4329D 突变小鼠的 EOM 体外肌力明显降低。肌肉力量的下降还伴随着 RyR1 蛋白含量约减少 40%,电诱发钙瞬变减少,肌肉超微结构紊乱以及钙释放单位数量减少。出乎意料的是,RyR1p.Q1970fsX16+p.A4329D 突变小鼠中的超快和眼肌特异性肌球蛋白重链-E0 同工型几乎检测不到。本研究结果首次表明,由 RyR1p.Q1970fsX16+p.A4329D 复合杂合 Ryr1 突变引起的 EOM 表型是复杂的,是由于直接影响钙释放相关大分子复合物以及间接影响肌球蛋白重链同工型表达的多种修饰共同作用的结果。

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