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Efficient ssODN-Mediated Targeting by Avoiding Cellular Inhibitory RNAs through Precomplexed CRISPR-Cas9/sgRNA Ribonucleoprotein

Combined with CRISPR-Cas9 technology and single-stranded oligodeoxynucleotides (ssODNs), specific single-nucleotide alterations can be introduced into a targeted genomic locus in induced pluripotent stem cells (iPSCs); however, ssODN knockin frequency is low compared with deletion induction. Althoug...

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Autores principales: Kagita, Akihiro, Lung, Mandy S.Y., Xu, Huaigeng, Kita, Yuto, Sasakawa, Noriko, Iguchi, Takahiro, Ono, Miyuki, Wang, Xiou H., Gee, Peter, Hotta, Akitsu
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8072016/
https://www.ncbi.nlm.nih.gov/pubmed/33711268
http://dx.doi.org/10.1016/j.stemcr.2021.02.013
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author Kagita, Akihiro
Lung, Mandy S.Y.
Xu, Huaigeng
Kita, Yuto
Sasakawa, Noriko
Iguchi, Takahiro
Ono, Miyuki
Wang, Xiou H.
Gee, Peter
Hotta, Akitsu
author_facet Kagita, Akihiro
Lung, Mandy S.Y.
Xu, Huaigeng
Kita, Yuto
Sasakawa, Noriko
Iguchi, Takahiro
Ono, Miyuki
Wang, Xiou H.
Gee, Peter
Hotta, Akitsu
author_sort Kagita, Akihiro
collection PubMed
description Combined with CRISPR-Cas9 technology and single-stranded oligodeoxynucleotides (ssODNs), specific single-nucleotide alterations can be introduced into a targeted genomic locus in induced pluripotent stem cells (iPSCs); however, ssODN knockin frequency is low compared with deletion induction. Although several Cas9 transduction methods have been reported, the biochemical behavior of CRISPR-Cas9 nuclease in mammalian cells is yet to be explored. Here, we investigated intrinsic cellular factors that affect Cas9 cleavage activity in vitro. We found that intracellular RNA, but not DNA or protein fractions, inhibits Cas9 from binding to single guide RNA (sgRNA) and reduces the enzymatic activity. To prevent this, precomplexing Cas9 and sgRNA before delivery into cells can lead to higher genome editing activity compared with Cas9 overexpression approaches. By optimizing electroporation parameters of precomplexed ribonucleoprotein and ssODN, we achieved efficiencies of single-nucleotide correction as high as 70% and loxP insertion up to 40%. Finally, we could replace the HLA-C1 allele with the C2 allele to generate histocompatibility leukocyte antigen custom-edited iPSCs.
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spelling pubmed-80720162021-04-29 Efficient ssODN-Mediated Targeting by Avoiding Cellular Inhibitory RNAs through Precomplexed CRISPR-Cas9/sgRNA Ribonucleoprotein Kagita, Akihiro Lung, Mandy S.Y. Xu, Huaigeng Kita, Yuto Sasakawa, Noriko Iguchi, Takahiro Ono, Miyuki Wang, Xiou H. Gee, Peter Hotta, Akitsu Stem Cell Reports Resource Combined with CRISPR-Cas9 technology and single-stranded oligodeoxynucleotides (ssODNs), specific single-nucleotide alterations can be introduced into a targeted genomic locus in induced pluripotent stem cells (iPSCs); however, ssODN knockin frequency is low compared with deletion induction. Although several Cas9 transduction methods have been reported, the biochemical behavior of CRISPR-Cas9 nuclease in mammalian cells is yet to be explored. Here, we investigated intrinsic cellular factors that affect Cas9 cleavage activity in vitro. We found that intracellular RNA, but not DNA or protein fractions, inhibits Cas9 from binding to single guide RNA (sgRNA) and reduces the enzymatic activity. To prevent this, precomplexing Cas9 and sgRNA before delivery into cells can lead to higher genome editing activity compared with Cas9 overexpression approaches. By optimizing electroporation parameters of precomplexed ribonucleoprotein and ssODN, we achieved efficiencies of single-nucleotide correction as high as 70% and loxP insertion up to 40%. Finally, we could replace the HLA-C1 allele with the C2 allele to generate histocompatibility leukocyte antigen custom-edited iPSCs. Elsevier 2021-03-11 /pmc/articles/PMC8072016/ /pubmed/33711268 http://dx.doi.org/10.1016/j.stemcr.2021.02.013 Text en © 2021 The Authors https://creativecommons.org/licenses/by/4.0/This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Resource
Kagita, Akihiro
Lung, Mandy S.Y.
Xu, Huaigeng
Kita, Yuto
Sasakawa, Noriko
Iguchi, Takahiro
Ono, Miyuki
Wang, Xiou H.
Gee, Peter
Hotta, Akitsu
Efficient ssODN-Mediated Targeting by Avoiding Cellular Inhibitory RNAs through Precomplexed CRISPR-Cas9/sgRNA Ribonucleoprotein
title Efficient ssODN-Mediated Targeting by Avoiding Cellular Inhibitory RNAs through Precomplexed CRISPR-Cas9/sgRNA Ribonucleoprotein
title_full Efficient ssODN-Mediated Targeting by Avoiding Cellular Inhibitory RNAs through Precomplexed CRISPR-Cas9/sgRNA Ribonucleoprotein
title_fullStr Efficient ssODN-Mediated Targeting by Avoiding Cellular Inhibitory RNAs through Precomplexed CRISPR-Cas9/sgRNA Ribonucleoprotein
title_full_unstemmed Efficient ssODN-Mediated Targeting by Avoiding Cellular Inhibitory RNAs through Precomplexed CRISPR-Cas9/sgRNA Ribonucleoprotein
title_short Efficient ssODN-Mediated Targeting by Avoiding Cellular Inhibitory RNAs through Precomplexed CRISPR-Cas9/sgRNA Ribonucleoprotein
title_sort efficient ssodn-mediated targeting by avoiding cellular inhibitory rnas through precomplexed crispr-cas9/sgrna ribonucleoprotein
topic Resource
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8072016/
https://www.ncbi.nlm.nih.gov/pubmed/33711268
http://dx.doi.org/10.1016/j.stemcr.2021.02.013
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