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与肌球蛋白轻链1相关的先天性肌病:临床、遗传和病理学见解

MYL1-Related Congenital Myopathy: Clinical, Genetic and Pathological Insights.

作者信息

Madrigal Irene, Villar-Vera Cristina, Arca Gemma, Expósito-Escudero Jesica, Rodríguez-Revenga Laia, Piolatti-Luna Andres, Muelas Nuria, Vilchez Roger, Ciutad Celdran Maria, Codina Anna, Estévez-Arias Berta, Carrera-Garcia Laura, Ortez Carlos, Rodriguez-Carunchio Leonardo, Sebastiani Giorgia, Azorin Inmaculada, Nascimento Andrés, Jou Cristina, Vilchez Juan Jesus, Natera-de Benito Daniel

机构信息

Biochemistry and Molecular Genetics Department, Hospital Clinic of Barcelona and Institut d'Investigacions Biomèdiques August Pi i Sunyer (IDIBAPS), Barcelona, Spain.

CIBER of Rare Diseases (CIBERER), Instituto de Salud Carlos III, Madrid, Spain.

出版信息

Neuropathol Appl Neurobiol. 2025 Jun;51(3):e70025. doi: 10.1111/nan.70025.

Abstract

Congenital myopathies and congenital muscular dystrophies encompass heterogeneous clinical and genetic groups of disorders characterised by muscle weakness with antenatal or early postnatal onset. These conditions are categorised according to distinctive myopathological features and causative genes. Despite advances in diagnosis through massive parallel sequencing and progress in understanding the underlying pathogenesis, many aspects of these disorders remain poorly understood. MYL1-related congenital myopathy is an ultra-rare and severe condition, associated with a deficiency of essential/alkali light myosin and impaired development of fast-twitch type II muscle fibres. This study aims to advance the understanding of the phenotype and pathogenesis of MYL1-congenital myopathy. We analysed the clinical characteristics of two individuals harbouring three novel variants in the MYL1 gene. We conducted detailed genomic analysis and extensive studies on their muscles using histological, immunohistochemical, immunofluorescence, Western Blot and electron microscopy. Both individuals showed a very severe congenital myopathy, characterised by congenital hypotonia and weakness, requiring ventilatory and nutritional assistance. Muscle biopsy revealed dystrophic-like or myopathic changes, with notable smallness of fast-twitch type II fibres, often arranged around larger type I fibres, drawing a floret pattern. These fibres expressed developmental myosin and exhibited features of aberrant myofibrillogenesis. Type I myofibres exhibited correct sarcomere alignment, but like the small fast-twitch fibres, both showed distorted cell organelles, vacuolar aggregates and membranous debris, indicating autophagic impairment. Our findings confirm that bi-allelic MYL1 variants are associated with a severe congenital myopathy, characterised by a distinctive clinical and histopathological phenotype involving impaired type II fibre development. Additionally, our study reveals a role for MYL1 in the organisation and trophism of all muscle fibre types. SUMMARY: MYL1 biallelic variants cause severe congenital myopathy with early hypotonia and type II fibre hypotrophy. Muscle biopsy shows a distinct pattern, including floret-like fibre arrangement. Findings suggest a broader role for MYL1 in fibre organisation and autophagy across muscle fibre types.

摘要

先天性肌病和先天性肌营养不良包括临床和遗传异质性的疾病组,其特征为产前或产后早期发病的肌肉无力。这些疾病根据独特的肌病理特征和致病基因进行分类。尽管通过大规模平行测序在诊断方面取得了进展,并且在理解潜在发病机制方面也有进展,但这些疾病的许多方面仍知之甚少。与肌球蛋白轻链1(MYL1)相关的先天性肌病是一种极其罕见且严重的疾病,与必需/碱性轻肌球蛋白缺乏以及快收缩II型肌纤维发育受损有关。本研究旨在增进对MYL1先天性肌病的表型和发病机制的理解。我们分析了两名携带MYL1基因三个新变异的个体的临床特征。我们对他们的肌肉进行了详细的基因组分析,并使用组织学、免疫组织化学、免疫荧光、蛋白质免疫印迹和电子显微镜进行了广泛研究。两名个体均表现出非常严重的先天性肌病,其特征为先天性肌张力减退和肌无力,需要通气和营养支持。肌肉活检显示出营养不良样或肌病性改变,快收缩II型纤维明显细小,常围绕较大的I型纤维排列,形成小花状图案。这些纤维表达发育性肌球蛋白,并表现出异常肌原纤维生成的特征。I型肌纤维表现出正确的肌节排列,但与细小的快收缩纤维一样,两者都显示出细胞器扭曲、空泡聚集和膜性碎片,表明自噬受损。我们的研究结果证实,双等位基因MYL1变异与严重的先天性肌病相关,其特征为独特的临床和组织病理学表型,涉及II型纤维发育受损。此外,我们的研究揭示了MYL1在所有肌纤维类型的组织和营养方面的作用。总结:MYL1双等位基因变异导致严重的先天性肌病,伴有早期肌张力减退和II型纤维萎缩。肌肉活检显示出独特的模式,包括小花状纤维排列。研究结果表明MYL1在跨肌纤维类型的纤维组织和自噬中具有更广泛的作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0da9/12147433/098c8dcfdd89/NAN-51-e70025-g006.jpg

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