Cargando…

Modeling PRPF31 retinitis pigmentosa using retinal pigment epithelium and organoids combined with gene augmentation rescue

Mutations in the ubiquitously expressed pre-mRNA processing factor (PRPF) 31 gene, one of the most common causes of dominant form of Retinitis Pigmentosa (RP), lead to a retina-specific phenotype. It is uncertain which retinal cell types are affected and animal models do not clearly present the RP p...

Descripción completa

Detalles Bibliográficos
Autores principales: Rodrigues, Amélie, Slembrouck-Brec, Amélie, Nanteau, Céline, Terray, Angélique, Tymoshenko, Yelyzaveta, Zagar, Yvrick, Reichman, Sacha, Xi, Zhouhuan, Sahel, José-Alain, Fouquet, Stéphane, Orieux, Gael, Nandrot, Emeline F., Byrne, Leah C., Audo, Isabelle, Roger, Jérôme E., Goureau, Olivier
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group UK 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9381579/
https://www.ncbi.nlm.nih.gov/pubmed/35974011
http://dx.doi.org/10.1038/s41536-022-00235-6
_version_ 1784769110105653248
author Rodrigues, Amélie
Slembrouck-Brec, Amélie
Nanteau, Céline
Terray, Angélique
Tymoshenko, Yelyzaveta
Zagar, Yvrick
Reichman, Sacha
Xi, Zhouhuan
Sahel, José-Alain
Fouquet, Stéphane
Orieux, Gael
Nandrot, Emeline F.
Byrne, Leah C.
Audo, Isabelle
Roger, Jérôme E.
Goureau, Olivier
author_facet Rodrigues, Amélie
Slembrouck-Brec, Amélie
Nanteau, Céline
Terray, Angélique
Tymoshenko, Yelyzaveta
Zagar, Yvrick
Reichman, Sacha
Xi, Zhouhuan
Sahel, José-Alain
Fouquet, Stéphane
Orieux, Gael
Nandrot, Emeline F.
Byrne, Leah C.
Audo, Isabelle
Roger, Jérôme E.
Goureau, Olivier
author_sort Rodrigues, Amélie
collection PubMed
description Mutations in the ubiquitously expressed pre-mRNA processing factor (PRPF) 31 gene, one of the most common causes of dominant form of Retinitis Pigmentosa (RP), lead to a retina-specific phenotype. It is uncertain which retinal cell types are affected and animal models do not clearly present the RP phenotype observed in PRPF31 patients. Retinal organoids and retinal pigment epithelial (RPE) cells derived from human-induced pluripotent stem cells (iPSCs) provide potential opportunities for studying human PRPF31-related RP. We demonstrate here that RPE cells carrying PRPF31 mutations present important morphological and functional changes and that PRPF31-mutated retinal organoids recapitulate the human RP phenotype, with a rod photoreceptor cell death followed by a loss of cones. The low level of PRPF31 expression may explain the defective phenotypes of PRPF31-mutated RPE and photoreceptor cells, which were not observed in cells derived from asymptomatic patients or after correction of the pathogenic mutation by CRISPR/Cas9. Transcriptome profiles revealed differentially expressed and mis-spliced genes belonging to pathways in line with the observed defective phenotypes. The rescue of RPE and photoreceptor defective phenotypes by PRPF31 gene augmentation provide the proof of concept for future therapeutic strategies.
format Online
Article
Text
id pubmed-9381579
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher Nature Publishing Group UK
record_format MEDLINE/PubMed
spelling pubmed-93815792022-08-18 Modeling PRPF31 retinitis pigmentosa using retinal pigment epithelium and organoids combined with gene augmentation rescue Rodrigues, Amélie Slembrouck-Brec, Amélie Nanteau, Céline Terray, Angélique Tymoshenko, Yelyzaveta Zagar, Yvrick Reichman, Sacha Xi, Zhouhuan Sahel, José-Alain Fouquet, Stéphane Orieux, Gael Nandrot, Emeline F. Byrne, Leah C. Audo, Isabelle Roger, Jérôme E. Goureau, Olivier NPJ Regen Med Article Mutations in the ubiquitously expressed pre-mRNA processing factor (PRPF) 31 gene, one of the most common causes of dominant form of Retinitis Pigmentosa (RP), lead to a retina-specific phenotype. It is uncertain which retinal cell types are affected and animal models do not clearly present the RP phenotype observed in PRPF31 patients. Retinal organoids and retinal pigment epithelial (RPE) cells derived from human-induced pluripotent stem cells (iPSCs) provide potential opportunities for studying human PRPF31-related RP. We demonstrate here that RPE cells carrying PRPF31 mutations present important morphological and functional changes and that PRPF31-mutated retinal organoids recapitulate the human RP phenotype, with a rod photoreceptor cell death followed by a loss of cones. The low level of PRPF31 expression may explain the defective phenotypes of PRPF31-mutated RPE and photoreceptor cells, which were not observed in cells derived from asymptomatic patients or after correction of the pathogenic mutation by CRISPR/Cas9. Transcriptome profiles revealed differentially expressed and mis-spliced genes belonging to pathways in line with the observed defective phenotypes. The rescue of RPE and photoreceptor defective phenotypes by PRPF31 gene augmentation provide the proof of concept for future therapeutic strategies. Nature Publishing Group UK 2022-08-16 /pmc/articles/PMC9381579/ /pubmed/35974011 http://dx.doi.org/10.1038/s41536-022-00235-6 Text en © The Author(s) 2022 https://creativecommons.org/licenses/by/4.0/Open Access This article is licensed under a Creative Commons Attribution 4.0 International License, which permits use, sharing, adaptation, distribution and reproduction in any medium or format, as long as you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons license, and indicate if changes were made. The images or other third party material in this article are included in the article’s Creative Commons license, unless indicated otherwise in a credit line to the material. If material is not included in the article’s Creative Commons license and your intended use is not permitted by statutory regulation or exceeds the permitted use, you will need to obtain permission directly from the copyright holder. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) .
spellingShingle Article
Rodrigues, Amélie
Slembrouck-Brec, Amélie
Nanteau, Céline
Terray, Angélique
Tymoshenko, Yelyzaveta
Zagar, Yvrick
Reichman, Sacha
Xi, Zhouhuan
Sahel, José-Alain
Fouquet, Stéphane
Orieux, Gael
Nandrot, Emeline F.
Byrne, Leah C.
Audo, Isabelle
Roger, Jérôme E.
Goureau, Olivier
Modeling PRPF31 retinitis pigmentosa using retinal pigment epithelium and organoids combined with gene augmentation rescue
title Modeling PRPF31 retinitis pigmentosa using retinal pigment epithelium and organoids combined with gene augmentation rescue
title_full Modeling PRPF31 retinitis pigmentosa using retinal pigment epithelium and organoids combined with gene augmentation rescue
title_fullStr Modeling PRPF31 retinitis pigmentosa using retinal pigment epithelium and organoids combined with gene augmentation rescue
title_full_unstemmed Modeling PRPF31 retinitis pigmentosa using retinal pigment epithelium and organoids combined with gene augmentation rescue
title_short Modeling PRPF31 retinitis pigmentosa using retinal pigment epithelium and organoids combined with gene augmentation rescue
title_sort modeling prpf31 retinitis pigmentosa using retinal pigment epithelium and organoids combined with gene augmentation rescue
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9381579/
https://www.ncbi.nlm.nih.gov/pubmed/35974011
http://dx.doi.org/10.1038/s41536-022-00235-6
work_keys_str_mv AT rodriguesamelie modelingprpf31retinitispigmentosausingretinalpigmentepitheliumandorganoidscombinedwithgeneaugmentationrescue
AT slembrouckbrecamelie modelingprpf31retinitispigmentosausingretinalpigmentepitheliumandorganoidscombinedwithgeneaugmentationrescue
AT nanteauceline modelingprpf31retinitispigmentosausingretinalpigmentepitheliumandorganoidscombinedwithgeneaugmentationrescue
AT terrayangelique modelingprpf31retinitispigmentosausingretinalpigmentepitheliumandorganoidscombinedwithgeneaugmentationrescue
AT tymoshenkoyelyzaveta modelingprpf31retinitispigmentosausingretinalpigmentepitheliumandorganoidscombinedwithgeneaugmentationrescue
AT zagaryvrick modelingprpf31retinitispigmentosausingretinalpigmentepitheliumandorganoidscombinedwithgeneaugmentationrescue
AT reichmansacha modelingprpf31retinitispigmentosausingretinalpigmentepitheliumandorganoidscombinedwithgeneaugmentationrescue
AT xizhouhuan modelingprpf31retinitispigmentosausingretinalpigmentepitheliumandorganoidscombinedwithgeneaugmentationrescue
AT saheljosealain modelingprpf31retinitispigmentosausingretinalpigmentepitheliumandorganoidscombinedwithgeneaugmentationrescue
AT fouquetstephane modelingprpf31retinitispigmentosausingretinalpigmentepitheliumandorganoidscombinedwithgeneaugmentationrescue
AT orieuxgael modelingprpf31retinitispigmentosausingretinalpigmentepitheliumandorganoidscombinedwithgeneaugmentationrescue
AT nandrotemelinef modelingprpf31retinitispigmentosausingretinalpigmentepitheliumandorganoidscombinedwithgeneaugmentationrescue
AT byrneleahc modelingprpf31retinitispigmentosausingretinalpigmentepitheliumandorganoidscombinedwithgeneaugmentationrescue
AT audoisabelle modelingprpf31retinitispigmentosausingretinalpigmentepitheliumandorganoidscombinedwithgeneaugmentationrescue
AT rogerjeromee modelingprpf31retinitispigmentosausingretinalpigmentepitheliumandorganoidscombinedwithgeneaugmentationrescue
AT goureauolivier modelingprpf31retinitispigmentosausingretinalpigmentepitheliumandorganoidscombinedwithgeneaugmentationrescue