RNA-seq analysis of an antisense sequence optimized for exon skipping in Duchenne patients reveals no off-target effect

Non-coding uridine-rich small nuclear RNAs (UsnRNAs) have emerged in recent years as effective tools for exon skipping for the treatment of Duchenne muscular dystrophy (DMD), a degenerative muscular genetic disorder. We recently showed the high capacity of a recombinant adeno-associated virus (rAAV)...

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Main Authors: Domenger, C, Allais, M, François, V, Léger, A, Lecomte, E, Montus, M, Servais, L, Voit, T, Moullier, P, Audic, Y, Le Guiner, C
Format: Journal article
Language:English
Published: Elsevier 2017
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author Domenger, C
Allais, M
François, V
Léger, A
Lecomte, E
Montus, M
Servais, L
Voit, T
Moullier, P
Audic, Y
Le Guiner, C
author_facet Domenger, C
Allais, M
François, V
Léger, A
Lecomte, E
Montus, M
Servais, L
Voit, T
Moullier, P
Audic, Y
Le Guiner, C
author_sort Domenger, C
collection OXFORD
description Non-coding uridine-rich small nuclear RNAs (UsnRNAs) have emerged in recent years as effective tools for exon skipping for the treatment of Duchenne muscular dystrophy (DMD), a degenerative muscular genetic disorder. We recently showed the high capacity of a recombinant adeno-associated virus (rAAV)-U7snRNA vector to restore the reading frame of the DMD mRNA in the muscles of DMD dogs. We are now moving toward a phase I/II clinical trial with an rAAV-U7snRNA-E53, carrying an antisense sequence designed to hybridize exon 53 of the human DMD messenger. As observed for genome-editing tools, antisense sequences present a risk of off-target effects, reflecting partial hybridization onto unintended transcripts. To characterize the clinical antisense sequence, we studied its expression and explored the occurrence of its off-target effects in human in vitro models of skeletal muscle and liver. We presented a comprehensive methodology combining RNA sequencing and in silico filtering to analyze off-targets. We showed that U7snRNA-E53 induced the effective exon skipping of the DMD transcript without inducing the notable deregulation of transcripts in human cells, neither at gene expression nor at the mRNA splicing level. Altogether, these results suggest that the use of the rAAV-U7snRNA-E53 vector for exon skipping could be safe in eligible DMD patients.
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spelling oxford-uuid:0efac0bf-94fb-44f2-ab46-45dd1e07060d2022-03-26T09:49:01ZRNA-seq analysis of an antisense sequence optimized for exon skipping in Duchenne patients reveals no off-target effectJournal articlehttp://purl.org/coar/resource_type/c_dcae04bcuuid:0efac0bf-94fb-44f2-ab46-45dd1e07060dEnglishSymplectic ElementsElsevier2017Domenger, CAllais, MFrançois, VLéger, ALecomte, EMontus, MServais, LVoit, TMoullier, PAudic, YLe Guiner, CNon-coding uridine-rich small nuclear RNAs (UsnRNAs) have emerged in recent years as effective tools for exon skipping for the treatment of Duchenne muscular dystrophy (DMD), a degenerative muscular genetic disorder. We recently showed the high capacity of a recombinant adeno-associated virus (rAAV)-U7snRNA vector to restore the reading frame of the DMD mRNA in the muscles of DMD dogs. We are now moving toward a phase I/II clinical trial with an rAAV-U7snRNA-E53, carrying an antisense sequence designed to hybridize exon 53 of the human DMD messenger. As observed for genome-editing tools, antisense sequences present a risk of off-target effects, reflecting partial hybridization onto unintended transcripts. To characterize the clinical antisense sequence, we studied its expression and explored the occurrence of its off-target effects in human in vitro models of skeletal muscle and liver. We presented a comprehensive methodology combining RNA sequencing and in silico filtering to analyze off-targets. We showed that U7snRNA-E53 induced the effective exon skipping of the DMD transcript without inducing the notable deregulation of transcripts in human cells, neither at gene expression nor at the mRNA splicing level. Altogether, these results suggest that the use of the rAAV-U7snRNA-E53 vector for exon skipping could be safe in eligible DMD patients.
spellingShingle Domenger, C
Allais, M
François, V
Léger, A
Lecomte, E
Montus, M
Servais, L
Voit, T
Moullier, P
Audic, Y
Le Guiner, C
RNA-seq analysis of an antisense sequence optimized for exon skipping in Duchenne patients reveals no off-target effect
title RNA-seq analysis of an antisense sequence optimized for exon skipping in Duchenne patients reveals no off-target effect
title_full RNA-seq analysis of an antisense sequence optimized for exon skipping in Duchenne patients reveals no off-target effect
title_fullStr RNA-seq analysis of an antisense sequence optimized for exon skipping in Duchenne patients reveals no off-target effect
title_full_unstemmed RNA-seq analysis of an antisense sequence optimized for exon skipping in Duchenne patients reveals no off-target effect
title_short RNA-seq analysis of an antisense sequence optimized for exon skipping in Duchenne patients reveals no off-target effect
title_sort rna seq analysis of an antisense sequence optimized for exon skipping in duchenne patients reveals no off target effect
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