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Updated: Mar 27, 2026

Characterizing Exon Skipping Efficiency in DMD Patient Samples in Clinical Trials of Antisense Oligonucleotides
Published on: May 7, 2020
RNAseq analysis for the diagnosis of muscular dystrophy
Hernan Gonorazky1, Minggao Liang2, Beryl Cummings3
1Division of Neurology Hospital for Sick Children Toronto Ontario Canada M5G A04; Program of Genetics and Genome Biology Hospital for Sick Children Toronto Ontario Canada M5G A04; Department of Paediatrics University of Toronto Toronto Ontario Canada M5G AO4.
Abstract:
The precise genetic cause remains elusive in nearly 50% of patients with presumed neurogenetic disease, representing a significant barrier for clinical care. This is despite significant advances in clinical genetic diagnostics, including the application of whole-exome sequencing and next-generation sequencing-based gene panels. In this study, we identify a deep intronic mutation in the DMD gene in a patient with muscular dystrophy using both conventional and RNAseq-based transcriptome analyses. The implications of our data are that noncoding mutations likely comprise an important source of unresolved genetic disease and that RNAseq is a powerful platform for detecting such mutations.
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