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.

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.