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Genome Editing in Patient iPSCs Corrects the Most Prevalent USH2A Mutations and Reveals Intriguing Mutant mRNA Expression Profiles

Inherited retinal dystrophies (IRDs) are characterized by progressive photoreceptor degeneration and vision loss. Usher syndrome (USH) is a syndromic IRD characterized by retinitis pigmentosa (RP) and hearing loss. USH is clinically and genetically heterogeneous, and the most prevalent causative gen...

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Autores principales: Sanjurjo-Soriano, Carla, Erkilic, Nejla, Baux, David, Mamaeva, Daria, Hamel, Christian P., Meunier, Isabelle, Roux, Anne-Françoise, Kalatzis, Vasiliki
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society of Gene & Cell Therapy 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6938853/
https://www.ncbi.nlm.nih.gov/pubmed/31909088
http://dx.doi.org/10.1016/j.omtm.2019.11.016
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author Sanjurjo-Soriano, Carla
Erkilic, Nejla
Baux, David
Mamaeva, Daria
Hamel, Christian P.
Meunier, Isabelle
Roux, Anne-Françoise
Kalatzis, Vasiliki
author_facet Sanjurjo-Soriano, Carla
Erkilic, Nejla
Baux, David
Mamaeva, Daria
Hamel, Christian P.
Meunier, Isabelle
Roux, Anne-Françoise
Kalatzis, Vasiliki
author_sort Sanjurjo-Soriano, Carla
collection PubMed
description Inherited retinal dystrophies (IRDs) are characterized by progressive photoreceptor degeneration and vision loss. Usher syndrome (USH) is a syndromic IRD characterized by retinitis pigmentosa (RP) and hearing loss. USH is clinically and genetically heterogeneous, and the most prevalent causative gene is USH2A. USH2A mutations also account for a large number of isolated autosomal recessive RP (arRP) cases. This high prevalence is due to two recurrent USH2A mutations, c.2276G>T and c.2299delG. Due to the large size of the USH2A cDNA, gene augmentation therapy is inaccessible. However, CRISPR/Cas9-mediated genome editing is a viable alternative. We used enhanced specificity Cas9 of Streptococcus pyogenes (eSpCas9) to successfully achieve seamless correction of the two most prevalent USH2A mutations in induced pluripotent stem cells (iPSCs) of patients with USH or arRP. Our results highlight features that promote high target efficacy and specificity of eSpCas9. Consistently, we did not identify any off-target mutagenesis in the corrected iPSCs, which also retained pluripotency and genetic stability. Furthermore, analysis of USH2A expression unexpectedly identified aberrant mRNA levels associated with the c.2276G>T and c.2299delG mutations that were reverted following correction. Taken together, our efficient CRISPR/Cas9-mediated strategy for USH2A mutation correction brings hope for a potential treatment for USH and arRP patients.
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spelling pubmed-69388532020-01-06 Genome Editing in Patient iPSCs Corrects the Most Prevalent USH2A Mutations and Reveals Intriguing Mutant mRNA Expression Profiles Sanjurjo-Soriano, Carla Erkilic, Nejla Baux, David Mamaeva, Daria Hamel, Christian P. Meunier, Isabelle Roux, Anne-Françoise Kalatzis, Vasiliki Mol Ther Methods Clin Dev Article Inherited retinal dystrophies (IRDs) are characterized by progressive photoreceptor degeneration and vision loss. Usher syndrome (USH) is a syndromic IRD characterized by retinitis pigmentosa (RP) and hearing loss. USH is clinically and genetically heterogeneous, and the most prevalent causative gene is USH2A. USH2A mutations also account for a large number of isolated autosomal recessive RP (arRP) cases. This high prevalence is due to two recurrent USH2A mutations, c.2276G>T and c.2299delG. Due to the large size of the USH2A cDNA, gene augmentation therapy is inaccessible. However, CRISPR/Cas9-mediated genome editing is a viable alternative. We used enhanced specificity Cas9 of Streptococcus pyogenes (eSpCas9) to successfully achieve seamless correction of the two most prevalent USH2A mutations in induced pluripotent stem cells (iPSCs) of patients with USH or arRP. Our results highlight features that promote high target efficacy and specificity of eSpCas9. Consistently, we did not identify any off-target mutagenesis in the corrected iPSCs, which also retained pluripotency and genetic stability. Furthermore, analysis of USH2A expression unexpectedly identified aberrant mRNA levels associated with the c.2276G>T and c.2299delG mutations that were reverted following correction. Taken together, our efficient CRISPR/Cas9-mediated strategy for USH2A mutation correction brings hope for a potential treatment for USH and arRP patients. American Society of Gene & Cell Therapy 2019-11-27 /pmc/articles/PMC6938853/ /pubmed/31909088 http://dx.doi.org/10.1016/j.omtm.2019.11.016 Text en © 2019 The Author(s) http://creativecommons.org/licenses/by-nc-nd/4.0/ This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Article
Sanjurjo-Soriano, Carla
Erkilic, Nejla
Baux, David
Mamaeva, Daria
Hamel, Christian P.
Meunier, Isabelle
Roux, Anne-Françoise
Kalatzis, Vasiliki
Genome Editing in Patient iPSCs Corrects the Most Prevalent USH2A Mutations and Reveals Intriguing Mutant mRNA Expression Profiles
title Genome Editing in Patient iPSCs Corrects the Most Prevalent USH2A Mutations and Reveals Intriguing Mutant mRNA Expression Profiles
title_full Genome Editing in Patient iPSCs Corrects the Most Prevalent USH2A Mutations and Reveals Intriguing Mutant mRNA Expression Profiles
title_fullStr Genome Editing in Patient iPSCs Corrects the Most Prevalent USH2A Mutations and Reveals Intriguing Mutant mRNA Expression Profiles
title_full_unstemmed Genome Editing in Patient iPSCs Corrects the Most Prevalent USH2A Mutations and Reveals Intriguing Mutant mRNA Expression Profiles
title_short Genome Editing in Patient iPSCs Corrects the Most Prevalent USH2A Mutations and Reveals Intriguing Mutant mRNA Expression Profiles
title_sort genome editing in patient ipscs corrects the most prevalent ush2a mutations and reveals intriguing mutant mrna expression profiles
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6938853/
https://www.ncbi.nlm.nih.gov/pubmed/31909088
http://dx.doi.org/10.1016/j.omtm.2019.11.016
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