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PAM-flexible Cas9-mediated base editing of a hemophilia B mutation in induced pluripotent stem cells

BACKGROUND: Base editing via CRISPR-Cas9 has garnered attention as a method for correcting disease-specific mutations without causing double-strand breaks, thereby avoiding large deletions and translocations in the host chromosome. However, its reliance on the protospacer adjacent motif (PAM) can li...

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Autores principales: Hiramoto, Takafumi, Kashiwakura, Yuji, Hayakawa, Morisada, Baatartsogt, Nemekhbayar, Kamoshita, Nobuhiko, Abe, Tomoyuki, Inaba, Hiroshi, Nishimasu, Hiroshi, Uosaki, Hideki, Hanazono, Yutaka, Nureki, Osamu, Ohmori, Tsukasa
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group UK 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10115777/
https://www.ncbi.nlm.nih.gov/pubmed/37076593
http://dx.doi.org/10.1038/s43856-023-00286-w
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author Hiramoto, Takafumi
Kashiwakura, Yuji
Hayakawa, Morisada
Baatartsogt, Nemekhbayar
Kamoshita, Nobuhiko
Abe, Tomoyuki
Inaba, Hiroshi
Nishimasu, Hiroshi
Uosaki, Hideki
Hanazono, Yutaka
Nureki, Osamu
Ohmori, Tsukasa
author_facet Hiramoto, Takafumi
Kashiwakura, Yuji
Hayakawa, Morisada
Baatartsogt, Nemekhbayar
Kamoshita, Nobuhiko
Abe, Tomoyuki
Inaba, Hiroshi
Nishimasu, Hiroshi
Uosaki, Hideki
Hanazono, Yutaka
Nureki, Osamu
Ohmori, Tsukasa
author_sort Hiramoto, Takafumi
collection PubMed
description BACKGROUND: Base editing via CRISPR-Cas9 has garnered attention as a method for correcting disease-specific mutations without causing double-strand breaks, thereby avoiding large deletions and translocations in the host chromosome. However, its reliance on the protospacer adjacent motif (PAM) can limit its use. We aimed to restore a disease mutation in a patient with severe hemophilia B using base editing with SpCas9-NG, a modified Cas9 with the board PAM flexibility. METHODS: We generated induced pluripotent stem cells (iPSCs) from a patient with hemophilia B (c.947T>C; I316T) and established HEK293 cells and knock-in mice expressing the patient’s F9 cDNA. We transduced the cytidine base editor (C>T), including the nickase version of Cas9 (wild-type SpCas9 or SpCas9-NG), into the HEK293 cells and knock-in mice through plasmid transfection and an adeno-associated virus vector, respectively. RESULTS: Here we demonstrate the broad PAM flexibility of SpCas9-NG near the mutation site. The base-editing approach using SpCas9-NG but not wild-type SpCas9 successfully converts C to T at the mutation in the iPSCs. Gene-corrected iPSCs differentiate into hepatocyte-like cells in vitro and express substantial levels of F9 mRNA after subrenal capsule transplantation into immunodeficient mice. Additionally, SpCas9-NG–mediated base editing corrects the mutation in both HEK293 cells and knock-in mice, thereby restoring the production of the coagulation factor. CONCLUSION: A base-editing approach utilizing the broad PAM flexibility of SpCas9-NG can provide a solution for the treatment of genetic diseases, including hemophilia B.
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spelling pubmed-101157772023-04-21 PAM-flexible Cas9-mediated base editing of a hemophilia B mutation in induced pluripotent stem cells Hiramoto, Takafumi Kashiwakura, Yuji Hayakawa, Morisada Baatartsogt, Nemekhbayar Kamoshita, Nobuhiko Abe, Tomoyuki Inaba, Hiroshi Nishimasu, Hiroshi Uosaki, Hideki Hanazono, Yutaka Nureki, Osamu Ohmori, Tsukasa Commun Med (Lond) Article BACKGROUND: Base editing via CRISPR-Cas9 has garnered attention as a method for correcting disease-specific mutations without causing double-strand breaks, thereby avoiding large deletions and translocations in the host chromosome. However, its reliance on the protospacer adjacent motif (PAM) can limit its use. We aimed to restore a disease mutation in a patient with severe hemophilia B using base editing with SpCas9-NG, a modified Cas9 with the board PAM flexibility. METHODS: We generated induced pluripotent stem cells (iPSCs) from a patient with hemophilia B (c.947T>C; I316T) and established HEK293 cells and knock-in mice expressing the patient’s F9 cDNA. We transduced the cytidine base editor (C>T), including the nickase version of Cas9 (wild-type SpCas9 or SpCas9-NG), into the HEK293 cells and knock-in mice through plasmid transfection and an adeno-associated virus vector, respectively. RESULTS: Here we demonstrate the broad PAM flexibility of SpCas9-NG near the mutation site. The base-editing approach using SpCas9-NG but not wild-type SpCas9 successfully converts C to T at the mutation in the iPSCs. Gene-corrected iPSCs differentiate into hepatocyte-like cells in vitro and express substantial levels of F9 mRNA after subrenal capsule transplantation into immunodeficient mice. Additionally, SpCas9-NG–mediated base editing corrects the mutation in both HEK293 cells and knock-in mice, thereby restoring the production of the coagulation factor. CONCLUSION: A base-editing approach utilizing the broad PAM flexibility of SpCas9-NG can provide a solution for the treatment of genetic diseases, including hemophilia B. Nature Publishing Group UK 2023-04-19 /pmc/articles/PMC10115777/ /pubmed/37076593 http://dx.doi.org/10.1038/s43856-023-00286-w Text en © The Author(s) 2023 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
Hiramoto, Takafumi
Kashiwakura, Yuji
Hayakawa, Morisada
Baatartsogt, Nemekhbayar
Kamoshita, Nobuhiko
Abe, Tomoyuki
Inaba, Hiroshi
Nishimasu, Hiroshi
Uosaki, Hideki
Hanazono, Yutaka
Nureki, Osamu
Ohmori, Tsukasa
PAM-flexible Cas9-mediated base editing of a hemophilia B mutation in induced pluripotent stem cells
title PAM-flexible Cas9-mediated base editing of a hemophilia B mutation in induced pluripotent stem cells
title_full PAM-flexible Cas9-mediated base editing of a hemophilia B mutation in induced pluripotent stem cells
title_fullStr PAM-flexible Cas9-mediated base editing of a hemophilia B mutation in induced pluripotent stem cells
title_full_unstemmed PAM-flexible Cas9-mediated base editing of a hemophilia B mutation in induced pluripotent stem cells
title_short PAM-flexible Cas9-mediated base editing of a hemophilia B mutation in induced pluripotent stem cells
title_sort pam-flexible cas9-mediated base editing of a hemophilia b mutation in induced pluripotent stem cells
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10115777/
https://www.ncbi.nlm.nih.gov/pubmed/37076593
http://dx.doi.org/10.1038/s43856-023-00286-w
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