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Construction and validation of an RNA trans-splicing molecule suitable to repair a large number of COL7A1 mutations

RNA trans-splicing has become a versatile tool in the gene therapy of monogenetic diseases. This technique is especially valuable for the correction of mutations in large genes such as COL7A1, which underlie the dystrophic subtype of the skin blistering disease epidermolysis bullosa. Over 800 mutati...

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Autores principales: Tockner, B, Kocher, T, Hainzl, S, Reichelt, J, Bauer, J W, Koller, U, Murauer, E M
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5097067/
https://www.ncbi.nlm.nih.gov/pubmed/27434145
http://dx.doi.org/10.1038/gt.2016.57
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author Tockner, B
Kocher, T
Hainzl, S
Reichelt, J
Bauer, J W
Koller, U
Murauer, E M
author_facet Tockner, B
Kocher, T
Hainzl, S
Reichelt, J
Bauer, J W
Koller, U
Murauer, E M
author_sort Tockner, B
collection PubMed
description RNA trans-splicing has become a versatile tool in the gene therapy of monogenetic diseases. This technique is especially valuable for the correction of mutations in large genes such as COL7A1, which underlie the dystrophic subtype of the skin blistering disease epidermolysis bullosa. Over 800 mutations spanning the entire length of the COL7A1 gene have been associated with defects in type VII collagen, leading to excessive fragility of epithelial tissues, the hallmark of dystrophic epidermolysis bullosa (DEB). In the present study, we designed an RNA trans-splicing molecule (RTM) that is capable of repairing any given mutation within a 4200 nucleotide region spanning the 3′ half of COL7A1. The selected RTM, RTM28, was able to induce accurate trans-splicing into endogenous COL7A1 pre-mRNA transcripts in a type VII collagen-deficient DEB patient-derived cell line. Correct trans-splicing was detected at the RNA level by semiquantitative RT-PCR and correction of full-length type VII collagen was confirmed at the protein level by immunofluorescence and western blot analyses. Our results demonstrate that RTM28, which covers >60% of all mutations reported in DEB and is thus the longest RTM described so far for the repair of COL7A1, represents a promising candidate for therapeutic applications.
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spelling pubmed-50970672016-11-18 Construction and validation of an RNA trans-splicing molecule suitable to repair a large number of COL7A1 mutations Tockner, B Kocher, T Hainzl, S Reichelt, J Bauer, J W Koller, U Murauer, E M Gene Ther Original Article RNA trans-splicing has become a versatile tool in the gene therapy of monogenetic diseases. This technique is especially valuable for the correction of mutations in large genes such as COL7A1, which underlie the dystrophic subtype of the skin blistering disease epidermolysis bullosa. Over 800 mutations spanning the entire length of the COL7A1 gene have been associated with defects in type VII collagen, leading to excessive fragility of epithelial tissues, the hallmark of dystrophic epidermolysis bullosa (DEB). In the present study, we designed an RNA trans-splicing molecule (RTM) that is capable of repairing any given mutation within a 4200 nucleotide region spanning the 3′ half of COL7A1. The selected RTM, RTM28, was able to induce accurate trans-splicing into endogenous COL7A1 pre-mRNA transcripts in a type VII collagen-deficient DEB patient-derived cell line. Correct trans-splicing was detected at the RNA level by semiquantitative RT-PCR and correction of full-length type VII collagen was confirmed at the protein level by immunofluorescence and western blot analyses. Our results demonstrate that RTM28, which covers >60% of all mutations reported in DEB and is thus the longest RTM described so far for the repair of COL7A1, represents a promising candidate for therapeutic applications. Nature Publishing Group 2016-11 2016-08-11 /pmc/articles/PMC5097067/ /pubmed/27434145 http://dx.doi.org/10.1038/gt.2016.57 Text en Copyright © 2016 Macmillan Publishers Limited, part of Springer Nature. http://creativecommons.org/licenses/by-nc-nd/4.0/ This work is licensed under a Creative Commons Attribution-NonCommercial-NoDerivs 4.0 International License. The images or other third party material in this article are included in the article's Creative Commons license, unless indicated otherwise in the credit line; if the material is not included under the Creative Commons license, users will need to obtain permission from the license holder to reproduce the material. To view a copy of this license, visit http://creativecommons.org/licenses/by-nc-nd/4.0/
spellingShingle Original Article
Tockner, B
Kocher, T
Hainzl, S
Reichelt, J
Bauer, J W
Koller, U
Murauer, E M
Construction and validation of an RNA trans-splicing molecule suitable to repair a large number of COL7A1 mutations
title Construction and validation of an RNA trans-splicing molecule suitable to repair a large number of COL7A1 mutations
title_full Construction and validation of an RNA trans-splicing molecule suitable to repair a large number of COL7A1 mutations
title_fullStr Construction and validation of an RNA trans-splicing molecule suitable to repair a large number of COL7A1 mutations
title_full_unstemmed Construction and validation of an RNA trans-splicing molecule suitable to repair a large number of COL7A1 mutations
title_short Construction and validation of an RNA trans-splicing molecule suitable to repair a large number of COL7A1 mutations
title_sort construction and validation of an rna trans-splicing molecule suitable to repair a large number of col7a1 mutations
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5097067/
https://www.ncbi.nlm.nih.gov/pubmed/27434145
http://dx.doi.org/10.1038/gt.2016.57
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