Gene-Corrected Human iPSC–Derived Cardiomyocytes and Skeletal Muscles Reveal Partial Dystrophin Dp427 Preservation and Cardiac Dp116 Expression in Duchenne Muscular Dystrophy Patient With a Splice-Site Mutation in Intron 68 (c.9975-1G>T)
Marta Białobrzeska, Marta Przymuszała, Paweł Ferdek, Iryna Viestia, Anna Potulska-Chromik, Anna Kostera-Pruszczyk, Katarzyna Łuczak-Woźniak, Jacek Stępniewski, Urszula Florczyk-Soluch, Józef DulakBACKGROUND:
Duchenne muscular dystrophy (DMD) is a severe X-linked neuromuscular disease caused by mutations in the
METHODS:
To investigate these differences, we established a human induced pluripotent stem cell model of DMD from peripheral blood mononuclear cells of a patient (DMD patient with a point mutation in intron 68 (c.9975-1G>T) investigated in the study [DMB15]) carrying a splice-site mutation in intron 68 (c.9975-1G>T). An isogenic control line was generated via clustered regularly interspaced short palindromic repeats/clustered regularly interspaced short palindromic repeats–associated protein 9 correction. Both repaired and DMD human induced pluripotent stem cells were differentiated into cardiomyocytes (DMB15-CMs) and skeletal muscle cells (DMB15-derived skeletal muscle cells); the skeletal muscle lineage included a myoblast (DMB15-derived myoblasts) stage. Transcript and protein analyses were performed, along with functional assessments using microelectrode array recordings and calcium handling analysis.
RESULTS:
Transcript analysis revealed an in-frame deletion of 2 amino acids (Tyr3325 and Arg3326) due to skipping of the first 6 nucleotides of exon 69. Despite this, near full-length Dp427 (full-length dystrophin isoform of 427 kDa) was detected by Western blot, along with expression of Dp116 (dystrophin isoform of 116 kDa) in DMB15-CMs. Dystrophin levels were preserved in DMD DMB15-CMs but markedly reduced in DMB15-derived skeletal muscle cells, suggesting tissue-specific regulation. Analysis of DMB15-derived myoblasts demonstrated possible changes in myogenic program activation, alongside inconsistent expression of utrophin, the dystrophin paralogue. Functional analysis showed altered β-adrenergic responsiveness in DMD DMB15-CMs, with increased beating frequency and accelerated repolarization on isoproterenol stimulation. DMB15-CMs showed largely preserved basal Ca 2+ cycling but failed to maintain a normal amplitude response under β-adrenergic stimulation.
CONCLUSIONS:
Our study identifies a splice-site