CRISPR-mediated correction of skeletal muscle Ca 2+ handling in a novel DMD patient-derived pluripotent stem cell model
CRISPR-mediated correction of skeletal muscle Ca 2+ handling in a novel DMD patient-derived pluripotent stem cell model
Mutations in the dystrophin gene cause the most common and currently incurable Duchenne muscular dystrophy (DMD) characterized by progressive muscle wasting. Although abnormal Ca2+ handling is a pathological feature of DMD, mechanisms underlying defective Ca2+ homeostasis remain unclear. Here we generate a novel DMD patient-derived pluripotent stem cell (PSC) model of skeletal muscle with an isogenic control using clustered regularly interspaced short palindromic repeat (CRISPR)-mediated precise gene correction. Transcriptome analysis identifies dysregulated gene sets in the absence of dystrophin, including genes involved in Ca2+ handling, excitation-contraction coupling and muscle contraction. Specifically, analysis of intracellular Ca2+ transients and mathematical modeling of Ca2+ dynamics reveal significantly reduced cytosolic Ca2+ clearance rates in DMD-PSC derived myotubes. Pharmacological assays demonstrate Ca2+ flux in myotubes is determined by both intracellular and extracellular sources. DMD-PSC derived myotubes display significantly reduced velocity of contractility. Compared with a non-isogenic wild type PSC line, these pathophysiological defects could be rescued by CRISPR-mediated precise gene correction. Our study provides new insights into abnormal Ca2+ homeostasis in DMD and suggests that Ca2+ signaling pathways amenable to pharmacological modulation are potential therapeutic targets. Importantly, we have established a human physiology-relevant in vitro model enabling rapid pre-clinical testing of potential therapies for DMD.
Kim Jihee、Muntoni Francesco、Christoforou Nicolas、Tinker Andrew、Rybin Denis、Moccia Robert、Kowala Anna、Garren Seth、Morgan Jennifer E、Morera Cristina、Nobles Muriel、Paredes-Redondo Amaia、Owens Jane、Liu Pentao、Meng Jinhong、Lin Yung-Yao
基础医学生理学遗传学
Kim Jihee,Muntoni Francesco,Christoforou Nicolas,Tinker Andrew,Rybin Denis,Moccia Robert,Kowala Anna,Garren Seth,Morgan Jennifer E,Morera Cristina,Nobles Muriel,Paredes-Redondo Amaia,Owens Jane,Liu Pentao,Meng Jinhong,Lin Yung-Yao.CRISPR-mediated correction of skeletal muscle Ca 2+ handling in a novel DMD patient-derived pluripotent stem cell model[EB/OL].(2025-03-28)[2025-04-25].https://www.biorxiv.org/content/10.1101/2022.02.17.480850.点此复制
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