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秀丽隐杆线虫模型可用于研究由人类 LMNA 错义变异引起的横纹肌疾病。

Caenorhabditis elegans models for striated muscle disorders caused by missense variants of human LMNA.

机构信息

Department of Molecular and Cellular Biology, University of California, Davis, California, United States of America.

InVivo Biosystems, Eugene, Oregon, United States of America.

出版信息

PLoS Genet. 2023 Aug 25;19(8):e1010895. doi: 10.1371/journal.pgen.1010895. eCollection 2023 Aug.

Abstract

Striated muscle laminopathies caused by missense mutations in the nuclear lamin gene LMNA are characterized by cardiac dysfunction and often skeletal muscle defects. Attempts to predict which LMNA variants are pathogenic and to understand their physiological effects lag behind variant discovery. We created Caenorhabditis elegans models for striated muscle laminopathies by introducing pathogenic human LMNA variants and variants of unknown significance at conserved residues within the lmn-1 gene. Severe missense variants reduced fertility and/or motility in C. elegans. Nuclear morphology defects were evident in the hypodermal nuclei of many lamin variant strains, indicating a loss of nuclear envelope integrity. Phenotypic severity varied within the two classes of missense mutations involved in striated muscle disease, but overall, variants associated with both skeletal and cardiac muscle defects in humans lead to more severe phenotypes in our model than variants predicted to disrupt cardiac function alone. We also identified a separation of function allele, lmn-1(R204W), that exhibited normal viability and swimming behavior but had a severe nuclear migration defect. Thus, we established C. elegans avatars for striated muscle laminopathies and identified LMNA variants that offer insight into lamin mechanisms during normal development.

摘要

由核层蛋白基因 LMNA 上的错义突变引起的横纹肌层联蛋白病的特征是心脏功能障碍,通常还有骨骼肌缺陷。预测哪些 LMNA 变体是致病性的,并了解它们的生理效应的尝试落后于变体发现。我们通过在 lmn-1 基因内的保守残基处引入致病性人类 LMNA 变体和意义不明的变体,在秀丽隐杆线虫中创建了横纹肌层联蛋白病的模型。严重的错义变体降低了秀丽隐杆线虫的生育力和/或运动能力。许多层粘连蛋白变体菌株的真皮核中出现核形态缺陷,表明核包膜完整性丧失。两种类型的横纹肌疾病相关的错义突变中,表型严重程度存在差异,但总体而言,与人类骨骼肌和心肌缺陷相关的变体比仅预测会破坏心脏功能的变体在我们的模型中导致更严重的表型。我们还鉴定了一个分离功能等位基因 lmn-1(R204W),该等位基因表现出正常的活力和游泳行为,但存在严重的核迁移缺陷。因此,我们建立了秀丽隐杆线虫的横纹肌层联蛋白病模型,并鉴定了 LMNA 变体,这些变体提供了对正常发育过程中层粘连蛋白机制的深入了解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5530/10484454/ddc09663459f/pgen.1010895.g001.jpg

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