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一个新的 MYOT 框内缺失导致成年早期发病的远端肌病。

A novel in-frame deletion in MYOT causes an early adult onset distal myopathy.

机构信息

Department of Neurosciences, Biomedicine and Movement Sciences, University of Verona, Verona, Italy.

Department of Molecular and Translational Medicine, Division of Biology and Genetics, University of Brescia, Brescia, Italy.

出版信息

Clin Genet. 2023 Dec;104(6):705-710. doi: 10.1111/cge.14413. Epub 2023 Aug 8.

Abstract

Missense mutations in MYOT encoding the sarcomeric Z-disk protein myotilin cause three main myopathic phenotypes including proximal limb-girdle muscular dystrophy, spheroid body myopathy, and late-onset distal myopathy. We describe a family carrying a heterozygous MYOT deletion (Tyr4_His9del) that clinically was characterized by an early-adult onset distal muscle weakness and pathologically by a myofibrillar myopathy (MFM). Molecular modeling of the full-length myotilin protein revealed that the 4-YERPKH-9 amino acids are involved in local interactions within the N-terminal portion of myotilin. Injection of in vitro synthetized mutated human MYOT RNA or of plasmid carrying its cDNA sequence in zebrafish embryos led to muscle defects characterized by sarcomeric disorganization of muscle fibers and widening of the I-band, and severe motor impairments. We identify MYOT novel Tyr4_His9 deletion as the cause of an early-onset MFM with a distal myopathy phenotype and provide data supporting the importance of the amino acid sequence for the structural role of myotilin in the sarcomeric organization of myofibers.

摘要

编码肌节 Z 盘蛋白肌联蛋白的 MYOT 错义突变导致三种主要的肌病表型,包括近端肢体肌营养不良症、球形体肌病和迟发性远端肌病。我们描述了一个携带杂合性 MYOT 缺失(Tyr4_His9del)的家族,该缺失在临床上表现为成年早期发病的远端肌肉无力,病理学上表现为肌纤维原肌病(MFM)。全长肌联蛋白蛋白的分子建模表明,4-YERPKH-9 个氨基酸参与肌联蛋白 N 端部分的局部相互作用。在斑马鱼胚胎中注射体外合成的突变型人类 MYOT RNA 或携带其 cDNA 序列的质粒,导致肌肉缺陷,特征为肌纤维肌节排列紊乱和 I 带增宽,并伴有严重的运动障碍。我们确定 MYOT 新型 Tyr4_His9 缺失是导致早期 MFM 伴远端肌病表型的原因,并提供数据支持该氨基酸序列对于肌联蛋白在肌纤维肌节组织中的结构作用的重要性。

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