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Updated: Jun 29, 2025

Multi-exon Skipping Using Cocktail Antisense Oligonucleotides in the Canine X-linked Muscular Dystrophy
Published on: May 24, 2016
A novel deep intronic variant introduce dystrophin pseudoexon in Becker muscular dystrophy: A case report
Chang Liu1, Yanyu Lu1, Haiyan Yu2
1Department of Neurology, Peking University First Hospital, Beijing, 100034, China.
Abstract:
Most pathogenic DMD variants are detectable and interpretable by standard genetic testing for dystrophinopthies. However, approximately 1∼3% of dystrophinopthies patients still do not have a detectable DMD variant after standard genetic testing, most likely due to structural chromosome rearrangements and/or deep intronic pseudoexon-activating variants. Here, we report on a boy with a suspected diagnosis of Becker muscular dystrophy (BMD) who remained without a detectable DMD variant after exonic DNA-based standard genetic testing. Dystrophin mRNA studies and genomic Sanger sequencing were performed in the boy, followed by in silico splicing analyses. We successfully detected a novel deep intronic disease-causing variant in the DMD gene (c.2380 + 3317A > T), which consequently resulting in a new dystrophin pseudoexon activation through the enhancement of a cryptic donor splice site. The patient was therefore genetically diagnosed with BMD. Our case report further emphasizes the significant role of disease-causing splicing variants within deep intronic regions in genetically undiagnosed dystrophinopathies.
Insights
Genetic testing for dystrophinopathies can miss deep intronic variants. This study identified a novel deep intronic variant in the DMD gene, leading to Becker muscular dystrophy diagnosis in an undiagnosed patient.
Area of Science:
- Genetics
- Molecular Biology
- Neuromuscular Disorders
Background:
- Standard genetic testing for dystrophinopathies typically detects most pathogenic DMD variants.
- A small percentage of patients remain undiagnosed due to complex genetic factors like deep intronic variants.
Observation:
- A boy with suspected Becker muscular dystrophy (BMD) lacked detectable DMD variants after standard exonic testing.
- Further investigation involved dystrophin mRNA studies, Sanger sequencing, and in silico splicing analysis.
Findings:
- A novel deep intronic variant (c.2380+3317A>T) in the DMD gene was identified.
- This variant activated a cryptic donor splice site, leading to pseudoexon inclusion in dystrophin mRNA.
- The patient received a genetic diagnosis of BMD.
Implications:
- Highlights the importance of investigating deep intronic regions for diagnosing dystrophinopathies.
- Underscores the role of splicing variants in genetically undiagnosed cases.
- Improves diagnostic yield for muscular dystrophy patients.
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