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Exon Exchange Approach to Repair Duchenne Dystrophin Transcripts

BACKGROUND: Trans-splicing strategies for mRNA repair involve engineered transcripts designed to anneal target mRNAs in order to interfere with their natural splicing, giving rise to mRNA chimeras where endogenous mutated exons have been replaced by exogenous replacement sequences. A number of trans...

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Autores principales: Lorain, Stéphanie, Peccate, Cécile, Le Hir, Maëva, Garcia, Luis
Formato: Texto
Lenguaje:English
Publicado: Public Library of Science 2010
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2878348/
https://www.ncbi.nlm.nih.gov/pubmed/20531943
http://dx.doi.org/10.1371/journal.pone.0010894
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author Lorain, Stéphanie
Peccate, Cécile
Le Hir, Maëva
Garcia, Luis
author_facet Lorain, Stéphanie
Peccate, Cécile
Le Hir, Maëva
Garcia, Luis
author_sort Lorain, Stéphanie
collection PubMed
description BACKGROUND: Trans-splicing strategies for mRNA repair involve engineered transcripts designed to anneal target mRNAs in order to interfere with their natural splicing, giving rise to mRNA chimeras where endogenous mutated exons have been replaced by exogenous replacement sequences. A number of trans-splicing molecules have already been proposed for replacing either the 5′ or the 3′ part of transcripts to be repaired. Here, we show the feasibility of RNA surgery by using a double trans-splicing approach allowing the specific substitution of a given mutated exon. METHODOLOGY/PRINCIPAL FINDINGS: As a target we used a minigene encoding a fragment of the mdx dystrophin gene enclosing the mutated exon (exon 23). This minigene was cotransfected with a variety of exon exchange constructions, differing in their annealing domains. We obtained accurate and efficient replacement of exon 23 in the mRNA target. Adding up a downstream intronic splice enhancer DISE in the exon exchange molecule enhanced drastically its efficiency up to 25–45% of repair depending on the construction in use. CONCLUSIONS/SIGNIFICANCE: These results demonstrate the possibility to fix up mutated exons, refurbish deleted exons and introduce protein motifs, while keeping natural untranslated sequences, which are essential for mRNA stability and translation regulation. Conversely to the well-known exon skipping, exon exchange has the advantage to be compatible with almost any type of mutations and more generally to a wide range of genetic conditions. In particular, it allows addressing disorders caused by dominant mutations.
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spelling pubmed-28783482010-06-07 Exon Exchange Approach to Repair Duchenne Dystrophin Transcripts Lorain, Stéphanie Peccate, Cécile Le Hir, Maëva Garcia, Luis PLoS One Research Article BACKGROUND: Trans-splicing strategies for mRNA repair involve engineered transcripts designed to anneal target mRNAs in order to interfere with their natural splicing, giving rise to mRNA chimeras where endogenous mutated exons have been replaced by exogenous replacement sequences. A number of trans-splicing molecules have already been proposed for replacing either the 5′ or the 3′ part of transcripts to be repaired. Here, we show the feasibility of RNA surgery by using a double trans-splicing approach allowing the specific substitution of a given mutated exon. METHODOLOGY/PRINCIPAL FINDINGS: As a target we used a minigene encoding a fragment of the mdx dystrophin gene enclosing the mutated exon (exon 23). This minigene was cotransfected with a variety of exon exchange constructions, differing in their annealing domains. We obtained accurate and efficient replacement of exon 23 in the mRNA target. Adding up a downstream intronic splice enhancer DISE in the exon exchange molecule enhanced drastically its efficiency up to 25–45% of repair depending on the construction in use. CONCLUSIONS/SIGNIFICANCE: These results demonstrate the possibility to fix up mutated exons, refurbish deleted exons and introduce protein motifs, while keeping natural untranslated sequences, which are essential for mRNA stability and translation regulation. Conversely to the well-known exon skipping, exon exchange has the advantage to be compatible with almost any type of mutations and more generally to a wide range of genetic conditions. In particular, it allows addressing disorders caused by dominant mutations. Public Library of Science 2010-05-28 /pmc/articles/PMC2878348/ /pubmed/20531943 http://dx.doi.org/10.1371/journal.pone.0010894 Text en Lorain et al. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Lorain, Stéphanie
Peccate, Cécile
Le Hir, Maëva
Garcia, Luis
Exon Exchange Approach to Repair Duchenne Dystrophin Transcripts
title Exon Exchange Approach to Repair Duchenne Dystrophin Transcripts
title_full Exon Exchange Approach to Repair Duchenne Dystrophin Transcripts
title_fullStr Exon Exchange Approach to Repair Duchenne Dystrophin Transcripts
title_full_unstemmed Exon Exchange Approach to Repair Duchenne Dystrophin Transcripts
title_short Exon Exchange Approach to Repair Duchenne Dystrophin Transcripts
title_sort exon exchange approach to repair duchenne dystrophin transcripts
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2878348/
https://www.ncbi.nlm.nih.gov/pubmed/20531943
http://dx.doi.org/10.1371/journal.pone.0010894
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