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肌营养不良蛋白病的分子遗传学

Molecular genetics of dystrophinopathy.

作者信息

Okubo Mariko

机构信息

Department of Human Genetics, Japan Institute for Health Security, National Institute of Global Health and Medicine, Tokyo, Japan.

出版信息

J Hum Genet. 2025 Jul 2. doi: 10.1038/s10038-025-01357-7.

DOI:10.1038/s10038-025-01357-7
PMID:40596735
Abstract

Dystrophinopathies, including Duchenne and Becker muscular dystrophies, are caused by pathogenic variants in the DMD gene, which spans 2.5 Mb and encodes multiple tissue-specific dystrophin isoforms. Advances in molecular diagnostic techniques have expanded our ability to detect a broad spectrum of DMD variants, including exonic deletions/duplications, small variants such as single-nucleotide variants and indels, and intronic rearrangements that disrupt splicing. Transcriptomic and long-read genomic analyses have revealed previously undetectable mechanisms of variation, including pseudoexon inclusion, intronic polyadenylation, and repeat expansions, underscoring the importance of integrating RNA-level data and in silico predictions into diagnostics. Genotype-phenotype correlations are influenced by the type and location of variants and by other factors, such as naturally occurring exon skipping and modifier genes. For instance, partial dystrophin expression caused by exon skipping in patients with certain nonsense variants can result in a milder Becker-like phenotype. These findings highlight the clinical significance of functional assays, such as minigene splicing reporters and immunostaining, in refining variant interpretation. This review summarizes the spectrum of DMD variants and outlines a stepwise diagnostic approach that integrates genetic, transcriptomic, and computational data. Special consideration is given to subgroups, such as female carriers and patients with mild phenotypes, in whom molecular diagnosis can be particularly challenging. Although therapeutic strategies are not the primary focus of this article, accurate molecular diagnosis forms the foundation for guiding individualized care. Together, these insights emphasize the value of integrated multi-omic variant assessment in improving diagnostic accuracy and patient management for dystrophinopathies.

摘要

肌营养不良症,包括杜氏和贝克肌营养不良症,由DMD基因中的致病变异引起,该基因跨度为2.5Mb,编码多种组织特异性肌营养不良蛋白异构体。分子诊断技术的进步扩展了我们检测广泛的DMD变异的能力,包括外显子缺失/重复、单核苷酸变异和插入缺失等小变异,以及破坏剪接的内含子重排。转录组学和长读长基因组分析揭示了以前无法检测到的变异机制,包括假外显子包含、内含子聚腺苷酸化和重复扩增,强调了将RNA水平数据和计算机预测整合到诊断中的重要性。基因型-表型相关性受变异类型和位置以及其他因素的影响,如自然发生的外显子跳跃和修饰基因。例如,某些无义变异患者中外显子跳跃导致的部分肌营养不良蛋白表达可导致较轻的贝克样表型。这些发现突出了功能分析(如小基因剪接报告基因和免疫染色)在完善变异解读中的临床意义。本综述总结了DMD变异的谱图,并概述了一种整合遗传、转录组和计算数据的逐步诊断方法。特别考虑了亚组,如女性携带者和轻度表型患者,其分子诊断可能特别具有挑战性。虽然治疗策略不是本文的主要重点,但准确的分子诊断是指导个体化治疗的基础。总之,这些见解强调了整合多组学变异评估在提高肌营养不良症诊断准确性和患者管理方面的价值。

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本文引用的文献

1
Clinical and genetic interpretation of uncertain DMD missense variants: evidence from mRNA and protein studies.不确定 DMD 错义变异的临床和遗传解读:来自 mRNA 和蛋白质研究的证据。
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The role of ataluren in the treatment of ambulatory and non-ambulatory children with nonsense mutation duchenne muscular dystrophy - a consensus derived using a modified Delphi methodology in Eastern Europe, Greece, Israel and Sweden.采用改良 Delphi 法在东欧、希腊、以色列和瑞典就非卧床和卧床杜氏肌营养不良症无义突变患儿使用氨苯砜治疗的共识。
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deletions underlining mild dystrophinopathies: literature review highlights phenotype-related mutation clusters and provides insights about genetic mechanisms and prognosis.
轻度肌营养不良症相关缺失:文献综述突出了与表型相关的突变簇,并提供了有关遗传机制和预后的见解。
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Uncovering the true features of dystrophin gene rearrangement and improving the molecular diagnosis of Duchenne and Becker muscular dystrophies.揭示肌营养不良蛋白基因重排的真实特征并改善杜氏和贝克型肌营养不良症的分子诊断。
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Higher Prevalence of Nonsense Pathogenic Variants in a Single-Center Cohort from Brazil: A Genetic Profile Study That May Guide the Choice of Disease-Modifying Treatments.巴西单中心队列中无义致病性变异的较高患病率:一项可能指导疾病修饰治疗选择的基因谱研究。
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Safety and effectiveness of ataluren in patients with nonsense mutation DMD in the STRIDE Registry compared with the CINRG Duchenne Natural History Study (2015-2022): 2022 interim analysis.STRIDE 注册研究中与 CINRG 杜氏肌营养不良自然史研究(2015-2022 年)相比,无义突变 DMD 患者使用 ataluren 的安全性和有效性:2022 年中期分析。
J Neurol. 2023 Aug;270(8):3896-3913. doi: 10.1007/s00415-023-11687-1. Epub 2023 Apr 28.
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Genes (Basel). 2023 Jan 14;14(1):214. doi: 10.3390/genes14010214.
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The discovery of the DNA methylation episignature for Duchenne muscular dystrophy.Duchenne 型肌营养不良症的 DNA 甲基化外显子组特征的发现。
Neuromuscul Disord. 2023 Jan;33(1):5-14. doi: 10.1016/j.nmd.2022.12.003. Epub 2022 Dec 7.
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Front Neurosci. 2022 Nov 7;16:992546. doi: 10.3389/fnins.2022.992546. eCollection 2022.
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