作者
David G Ousterout, Ami M Kabadi, Pratiksha I Thakore, Pablo Perez-Pinera, Matthew T Brown, William H Majoros, Timothy E Reddy, Charles A Gersbach
发表日期
2015/3/1
期刊
Molecular Therapy
卷号
23
期号
3
页码范围
523-532
出版商
Elsevier
简介
Duchenne muscular dystrophy (DMD) is caused by genetic mutations that result in the absence of dystrophin protein expression. Oligonucleotide-induced exon skipping can restore the dystrophin reading frame and protein production. However, this requires continuous drug administration and may not generate complete skipping of the targeted exon. In this study, we apply genome editing with zinc finger nucleases (ZFNs) to permanently remove essential splicing sequences in exon 51 of the dystrophin gene and thereby exclude exon 51 from the resulting dystrophin transcript. This approach can restore the dystrophin reading frame in ~13% of DMD patient mutations. Transfection of two ZFNs targeted to sites flanking the exon 51 splice acceptor into DMD patient myoblasts led to deletion of this genomic sequence. A clonal population was isolated with this deletion and following differentiation we confirmed loss of …
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