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An RNA-targeted therapy for dystrophic epidermolysis bullosa

Functional impairment or complete loss of type VII collagen, caused by mutations within COL7A1, lead to the severe recessive form of the skin blistering disease dystrophic epidermolysis bullosa (RDEB). Here, we successfully demonstrate RNA trans-splicing as an auspicious repair option for mutations...

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Autores principales: Peking, Patricia, Koller, Ulrich, Duarte, Blanca, Murillas, Rodolfo, Wolf, Susanne, Maetzig, Tobias, Rothe, Michael, Kocher, Thomas, García, Marta, Brachtl, Gabriele, Schambach, Axel, Larcher, Fernando, Reichelt, Julia, Bauer, Johann W., Murauer, Eva M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5737646/
https://www.ncbi.nlm.nih.gov/pubmed/28973459
http://dx.doi.org/10.1093/nar/gkx669
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author Peking, Patricia
Koller, Ulrich
Duarte, Blanca
Murillas, Rodolfo
Wolf, Susanne
Maetzig, Tobias
Rothe, Michael
Kocher, Thomas
García, Marta
Brachtl, Gabriele
Schambach, Axel
Larcher, Fernando
Reichelt, Julia
Bauer, Johann W.
Murauer, Eva M.
author_facet Peking, Patricia
Koller, Ulrich
Duarte, Blanca
Murillas, Rodolfo
Wolf, Susanne
Maetzig, Tobias
Rothe, Michael
Kocher, Thomas
García, Marta
Brachtl, Gabriele
Schambach, Axel
Larcher, Fernando
Reichelt, Julia
Bauer, Johann W.
Murauer, Eva M.
author_sort Peking, Patricia
collection PubMed
description Functional impairment or complete loss of type VII collagen, caused by mutations within COL7A1, lead to the severe recessive form of the skin blistering disease dystrophic epidermolysis bullosa (RDEB). Here, we successfully demonstrate RNA trans-splicing as an auspicious repair option for mutations located in a wide range of exons by fully converting an RDEB phenotype in an ex vivo pre-clinical mouse model based on xenotransplantation. Via a self-inactivating (SIN) lentiviral vector a 3′ RNA trans-splicing molecule, capable of replacing COL7A1 exons 65–118, was delivered into type VII collagen deficient patient keratinocytes, carrying a homozygous mutation in exon 80 (c.6527insC). Following vector integration, protein analysis of an isolated corrected single cell clone showed secretion of the corrected type VII collagen at similar levels compared to normal keratinocytes. To confirm full phenotypic and long-term correction in vivo, patches of skin equivalents expanded from the corrected cell clone were grafted onto immunodeficient mice. Immunolabelling of 12 weeks old skin specimens showed strong expression of human type VII collagen restricted to the basement membrane zone. We demonstrate that the RNA trans-splicing technology combined with a SIN lentiviral vector is suitable for an ex vivo molecular therapy approach and thus adaptable for clinical application.
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spelling pubmed-57376462018-01-04 An RNA-targeted therapy for dystrophic epidermolysis bullosa Peking, Patricia Koller, Ulrich Duarte, Blanca Murillas, Rodolfo Wolf, Susanne Maetzig, Tobias Rothe, Michael Kocher, Thomas García, Marta Brachtl, Gabriele Schambach, Axel Larcher, Fernando Reichelt, Julia Bauer, Johann W. Murauer, Eva M. Nucleic Acids Res RNA and RNA-protein complexes Functional impairment or complete loss of type VII collagen, caused by mutations within COL7A1, lead to the severe recessive form of the skin blistering disease dystrophic epidermolysis bullosa (RDEB). Here, we successfully demonstrate RNA trans-splicing as an auspicious repair option for mutations located in a wide range of exons by fully converting an RDEB phenotype in an ex vivo pre-clinical mouse model based on xenotransplantation. Via a self-inactivating (SIN) lentiviral vector a 3′ RNA trans-splicing molecule, capable of replacing COL7A1 exons 65–118, was delivered into type VII collagen deficient patient keratinocytes, carrying a homozygous mutation in exon 80 (c.6527insC). Following vector integration, protein analysis of an isolated corrected single cell clone showed secretion of the corrected type VII collagen at similar levels compared to normal keratinocytes. To confirm full phenotypic and long-term correction in vivo, patches of skin equivalents expanded from the corrected cell clone were grafted onto immunodeficient mice. Immunolabelling of 12 weeks old skin specimens showed strong expression of human type VII collagen restricted to the basement membrane zone. We demonstrate that the RNA trans-splicing technology combined with a SIN lentiviral vector is suitable for an ex vivo molecular therapy approach and thus adaptable for clinical application. Oxford University Press 2017-09-29 2017-07-29 /pmc/articles/PMC5737646/ /pubmed/28973459 http://dx.doi.org/10.1093/nar/gkx669 Text en © The Author(s) 2017. Published by Oxford University Press on behalf of Nucleic Acids Research. http://creativecommons.org/licenses/by-nc/4.0/ This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by-nc/4.0/), which permits non-commercial re-use, distribution, and reproduction in any medium, provided the original work is properly cited. For commercial re-use, please contact journals.permissions@oup.com
spellingShingle RNA and RNA-protein complexes
Peking, Patricia
Koller, Ulrich
Duarte, Blanca
Murillas, Rodolfo
Wolf, Susanne
Maetzig, Tobias
Rothe, Michael
Kocher, Thomas
García, Marta
Brachtl, Gabriele
Schambach, Axel
Larcher, Fernando
Reichelt, Julia
Bauer, Johann W.
Murauer, Eva M.
An RNA-targeted therapy for dystrophic epidermolysis bullosa
title An RNA-targeted therapy for dystrophic epidermolysis bullosa
title_full An RNA-targeted therapy for dystrophic epidermolysis bullosa
title_fullStr An RNA-targeted therapy for dystrophic epidermolysis bullosa
title_full_unstemmed An RNA-targeted therapy for dystrophic epidermolysis bullosa
title_short An RNA-targeted therapy for dystrophic epidermolysis bullosa
title_sort rna-targeted therapy for dystrophic epidermolysis bullosa
topic RNA and RNA-protein complexes
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5737646/
https://www.ncbi.nlm.nih.gov/pubmed/28973459
http://dx.doi.org/10.1093/nar/gkx669
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