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Correction of Three Prominent Mutations in Mouse and Human Models of Duchenne Muscular Dystrophy by Single-Cut Genome Editing

Mol Ther. 2020; 
Yi-Li Min, Francesco Chemello, Hui Li, Cristina Rodriguez-Caycedo, Efrain Sanchez-Ortiz, Alex A Mireault, John R McAnally, John M Shelton, Yu Zhang, Rhonda Bassel-Duby, Eric N Olson
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Plasmid DNA Preparation … The AAV TRISPR-sgRNAs-CK8e-GFP plasmid contained three sgRNAs driven by the U6, H1 or 7SK promoters. The expression cassette was synthesized (Genscript), digested with restriction enzymes and subcloned into the pSJG self-complementary … Get A Quote

摘要

Duchenne muscular dystrophy (DMD), one of the most common neuromuscular disorders of children, is caused by the absence of dystrophin protein in striated muscle. Deletions of exons 43, 45, and 52 represent mutational "hotspot" regions in the dystrophin gene. We created three new DMD mouse models harboring deletions of exons 43, 45, and 52 to represent common DMD mutations. To optimize CRISPR-Cas9 genome editing using the single-cut strategy, we identified single guide RNAs (sgRNAs) capable of restoring dystrophin expression by inducing exon skipping and reframing. Intramuscular delivery of AAV9 encoding SpCas9 and selected sgRNAs efficiently restored dystrophin expression in these new mouse models, offering a ... More

关键词

AAV9, CRISPR-Cas9, dystrophin, human iPSCs, myopathy, single guide RNA