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Published on: May 7, 2020
A novel DMD intronic alteration: a potentially disease-causing variant of an intermediate muscular dystrophy
Ricardo Santin1, Igor Araujo Vieira2,3, Jean Costa Nunes4,5
1Santa Casa de Misericórdia de Porto Alegre, (ISCMPA), Porto Alegre, Rio Grande do Sul, Brazil.
Abstract:
Pathogenic germline variants in DMD gene, which encodes the well-known cytoskeletal protein named dystrophin, are associated with a wide range of dystrophinopathies disorders, such as Duchenne muscular dystrophy (DMD, severe form), Becker muscular dystrophy (BMD, mild form) and intermediate muscular dystrophy (IMD). Muscle biopsy, immunohistochemistry, molecular (multiplex ligation-dependent probe amplification (MLPA)/next-generation sequencing (NGS) and Sanger methods) and in silico analyses were performed in order to identify alterations in DMD gene and protein in a patient with a clinical manifestation and with high creatine kinase levels. Herein, we described a previously unreported intronic variant in DMD and reduced dystrophin staining in the muscle biopsy. This novel DMD variant allele, c.9649+4A>T that was located in a splice donor site within intron 66. Sanger sequencing analysis from maternal DNA showed the presence of both variant c.9649+4A>T and wild-type (WT) DMD alleles. Different computational tools suggested that this nucleotide change might affect splicing through a WT donor site disruption, occurring in an evolutionarily conserved region. Indeed, we observed that this novel variant, could explain the reduced dystrophin protein levels and discontinuous sarcolemmal staining in muscle biopsy, which suggests that c.9649+4A>T allele may be re-classified as pathogenic in the future. Our data show that the c.9649+4A>T intronic sequence variant in the DMD gene may be associated with an IMD phenotype and our findings reinforce the importance of a more precise diagnosis combining muscle biopsy, molecular techniques and comprehensive in silico approaches in the clinical cases with negative results for conventional genetic analysis.
Insights
A novel intronic variant in the DMD gene, c.9649+4A>T, was identified in a patient with muscular dystrophy. This finding may explain reduced dystrophin levels and supports integrated diagnostic approaches for genetic disorders.
Area of Science:
- Genetics and Molecular Biology
- Neurology
- Biochemistry
Background:
- Pathogenic variants in the dystrophin (DMD) gene cause dystrophinopathies, including Duchenne muscular dystrophy (DMD), Becker muscular dystrophy (BMD), and intermediate muscular dystrophy (IMD).
- Accurate genetic diagnosis is crucial for understanding disease mechanisms and patient management.
Observation:
- A patient presented with clinical manifestations and elevated creatine kinase levels, suggestive of a dystrophinopathy.
- Muscle biopsy revealed reduced dystrophin staining, indicating a potential molecular defect.
Findings:
- A previously unreported intronic variant, c.9649+4A>T, was identified in the DMD gene.
- This variant, located in a splice donor site, was predicted by in silico tools to affect mRNA splicing.
- Analysis of maternal DNA confirmed the presence of both the variant and wild-type DMD alleles.
Implications:
- The c.9649+4A>T variant is associated with reduced dystrophin protein levels and discontinuous sarcolemmal staining, potentially explaining an intermediate muscular dystrophy phenotype.
- This discovery highlights the importance of combining muscle biopsy, molecular analyses (MLPA/NGS, Sanger sequencing), and in silico approaches for diagnosing genetic disorders, especially when conventional genetic testing yields negative results.
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