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Efficient Skipping of Single Exon Duplications in DMDPatient-Derived Cell Lines Using an Antisense Oligonucleotide Approach

Authors :
Wein, Nicolas
Vulin, Adeline
Findlay, Andrew R.
Gumienny, Felecia
Huang, Nianyuan
Wilton, Steve D.
Flanigan, Kevin M.
Source :
Journal of Neuromuscular Diseases; August 2017, Vol. 4 Issue: 3 p199-207, 9p
Publication Year :
2017

Abstract

Background: Exon skipping strategies in Duchenne muscular dystrophy (DMD) have largely been directed toward altering splicing of exons flanking out-of-frame deletions, with the goal of restoring an open mRNA reading frame that leads to production of an internally deleted but partially functional dystrophin protein.Objective: We sought to apply exon skipping to duplication mutations, assuming that the inherently limited efficiency of antisense oligonucleotide-induced exon skipping would more frequently skip a single copy of a duplicated exon, rather than both and result in significant amounts of wild-type DMDmRNA.Methods: We tested this hypothesis in fibroblast cell lines derived from patients with a variety of single or multiple exon duplications that have been modified to allow transdifferentiation into a myogenic lineage.Results: Using a variety of 2’O-methyl antisense oligonucleotides, significant skipping was induced for each duplication leading to a wild-type transcript as a major mRNA product.Conclusions: This study provides another proof of concept for the feasibility of therapeutic skipping in patients carrying exon duplications in order to express wild-type, full-length mRNA, although careful evaluation of the skipping efficiency should be performed as some exons are easier to skip than others. Such a personalized strategy is expected to be highly beneficial for this subset of DMD patients, compared to inducing expression of an internally-deleted dystrophin.

Details

Language :
English
ISSN :
22143599 and 22143602
Volume :
4
Issue :
3
Database :
Supplemental Index
Journal :
Journal of Neuromuscular Diseases
Publication Type :
Periodical
Accession number :
ejs68038682
Full Text :
https://doi.org/10.3233/JND-170233