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MDM2 antagonists promote CRISPR/Cas9-mediated precise genome editing in sheep primary cells

CRISPR-Cas9-mediated genome editing in sheep is of great use in both agricultural and biomedical applications. While targeted gene knockout by CRISPR-Cas9 through non-homologous end joining (NHEJ) has worked efficiently, the knockin efficiency via homology-directed repair (HDR) remains lower, which...

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Autores principales: Li, Yan, Lian, Di, Wang, Jiahao, Zhao, Yue, Li, Yao, Liu, Guoshi, Wu, Sen, Deng, Shoulong, Du, Xuguang, Lian, Zhengxing
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society of Gene & Cell Therapy 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9883270/
https://www.ncbi.nlm.nih.gov/pubmed/36726409
http://dx.doi.org/10.1016/j.omtn.2022.12.020
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author Li, Yan
Lian, Di
Wang, Jiahao
Zhao, Yue
Li, Yao
Liu, Guoshi
Wu, Sen
Deng, Shoulong
Du, Xuguang
Lian, Zhengxing
author_facet Li, Yan
Lian, Di
Wang, Jiahao
Zhao, Yue
Li, Yao
Liu, Guoshi
Wu, Sen
Deng, Shoulong
Du, Xuguang
Lian, Zhengxing
author_sort Li, Yan
collection PubMed
description CRISPR-Cas9-mediated genome editing in sheep is of great use in both agricultural and biomedical applications. While targeted gene knockout by CRISPR-Cas9 through non-homologous end joining (NHEJ) has worked efficiently, the knockin efficiency via homology-directed repair (HDR) remains lower, which severely hampers the application of precise genome editing in sheep. Here, in sheep fetal fibroblasts (SFFs), we optimized several key parameters that affect HDR, including homology arm (HA) length and the amount of double-stranded DNA (dsDNA) repair template; we also observed synchronization of SFFs in G2/M phase could increase HDR efficiency. Besides, we identified three potent small molecules, RITA, Nutlin3, and CTX1, inhibitors of p53-MDM2 interaction, that caused activation of the p53 pathway, resulting in distinct G2/M cell-cycle arrest in response to DNA damage and improved CRISPR-Cas9-mediated HDR efficiency by 1.43- to 4.28-fold in SFFs. Furthermore, we demonstrated that genetic knockout of p53 could inhibit HDR in SFFs by suppressing the expression of several key factors involved in the HDR pathway, such as BRCA1 and RAD51. Overall, this study offers an optimized strategy for the usage of dsDNA repair template, more importantly, the application of MDM2 antagonists provides a simple and efficient strategy to promote CRISPR/Cas9-mediated precise genome editing in sheep primary cells.
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spelling pubmed-98832702023-01-31 MDM2 antagonists promote CRISPR/Cas9-mediated precise genome editing in sheep primary cells Li, Yan Lian, Di Wang, Jiahao Zhao, Yue Li, Yao Liu, Guoshi Wu, Sen Deng, Shoulong Du, Xuguang Lian, Zhengxing Mol Ther Nucleic Acids Original Article CRISPR-Cas9-mediated genome editing in sheep is of great use in both agricultural and biomedical applications. While targeted gene knockout by CRISPR-Cas9 through non-homologous end joining (NHEJ) has worked efficiently, the knockin efficiency via homology-directed repair (HDR) remains lower, which severely hampers the application of precise genome editing in sheep. Here, in sheep fetal fibroblasts (SFFs), we optimized several key parameters that affect HDR, including homology arm (HA) length and the amount of double-stranded DNA (dsDNA) repair template; we also observed synchronization of SFFs in G2/M phase could increase HDR efficiency. Besides, we identified three potent small molecules, RITA, Nutlin3, and CTX1, inhibitors of p53-MDM2 interaction, that caused activation of the p53 pathway, resulting in distinct G2/M cell-cycle arrest in response to DNA damage and improved CRISPR-Cas9-mediated HDR efficiency by 1.43- to 4.28-fold in SFFs. Furthermore, we demonstrated that genetic knockout of p53 could inhibit HDR in SFFs by suppressing the expression of several key factors involved in the HDR pathway, such as BRCA1 and RAD51. Overall, this study offers an optimized strategy for the usage of dsDNA repair template, more importantly, the application of MDM2 antagonists provides a simple and efficient strategy to promote CRISPR/Cas9-mediated precise genome editing in sheep primary cells. American Society of Gene & Cell Therapy 2023-01-02 /pmc/articles/PMC9883270/ /pubmed/36726409 http://dx.doi.org/10.1016/j.omtn.2022.12.020 Text en © 2023. https://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 Original Article
Li, Yan
Lian, Di
Wang, Jiahao
Zhao, Yue
Li, Yao
Liu, Guoshi
Wu, Sen
Deng, Shoulong
Du, Xuguang
Lian, Zhengxing
MDM2 antagonists promote CRISPR/Cas9-mediated precise genome editing in sheep primary cells
title MDM2 antagonists promote CRISPR/Cas9-mediated precise genome editing in sheep primary cells
title_full MDM2 antagonists promote CRISPR/Cas9-mediated precise genome editing in sheep primary cells
title_fullStr MDM2 antagonists promote CRISPR/Cas9-mediated precise genome editing in sheep primary cells
title_full_unstemmed MDM2 antagonists promote CRISPR/Cas9-mediated precise genome editing in sheep primary cells
title_short MDM2 antagonists promote CRISPR/Cas9-mediated precise genome editing in sheep primary cells
title_sort mdm2 antagonists promote crispr/cas9-mediated precise genome editing in sheep primary cells
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9883270/
https://www.ncbi.nlm.nih.gov/pubmed/36726409
http://dx.doi.org/10.1016/j.omtn.2022.12.020
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