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CRISPR-Cas12a Possesses Unconventional DNase Activity that Can Be Inactivated by Synthetic Oligonucleotides

CRISPR-Cas12a (CRISPR-Cpf1) was reported to have multiple types of cleavage activities. Without the assistance of CRISPR RNA (crRNA), we investigated DNase activity and substrate specificity of Cas12a orthologs in the presence of diverse divalent metal ions. Cas12a from different species are capable...

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Autores principales: Li, Bin, Yan, Jingyue, Zhang, Youxi, Li, Wenqing, Zeng, Chunxi, Zhao, Weiyu, Hou, Xucheng, Zhang, Chengxiang, Dong, Yizhou
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society of Gene & Cell Therapy 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7015830/
https://www.ncbi.nlm.nih.gov/pubmed/32045875
http://dx.doi.org/10.1016/j.omtn.2019.12.038
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author Li, Bin
Yan, Jingyue
Zhang, Youxi
Li, Wenqing
Zeng, Chunxi
Zhao, Weiyu
Hou, Xucheng
Zhang, Chengxiang
Dong, Yizhou
author_facet Li, Bin
Yan, Jingyue
Zhang, Youxi
Li, Wenqing
Zeng, Chunxi
Zhao, Weiyu
Hou, Xucheng
Zhang, Chengxiang
Dong, Yizhou
author_sort Li, Bin
collection PubMed
description CRISPR-Cas12a (CRISPR-Cpf1) was reported to have multiple types of cleavage activities. Without the assistance of CRISPR RNA (crRNA), we investigated DNase activity and substrate specificity of Cas12a orthologs in the presence of diverse divalent metal ions. Cas12a from different species are capable of degrading single-stranded DNA (ssDNA) and/or double-stranded DNA (dsDNA), depending on the metal ions used. In spite of sharing high sequence similarity and functional domains among diverse Cas12a orthologs, only Acidaminococcus sp. Cas12a (AsCas12a) showed a predominant preference for cleaving ssDNA, but no detectable activity toward dsDNA substrate in the presence of magnesium (II) ions. In addition, we found that both AsCas12a and Francisella novicida Cas12a (FnCas12a) caused substantial dsDNA cleavage in the presence of manganese (II) ion. More importantly, the DNase activities can be inhibited by synthetic DNA oligonucleotides with phosphorothioate linkage modifications. Overall, ssDNase activity of the Cas12a orthologs uncovered a distinct approach for DNA cleavage compared with crRNA-guided dsDNA breaks, and provided insights into potential biological and therapeutic applications.
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spelling pubmed-70158302020-02-18 CRISPR-Cas12a Possesses Unconventional DNase Activity that Can Be Inactivated by Synthetic Oligonucleotides Li, Bin Yan, Jingyue Zhang, Youxi Li, Wenqing Zeng, Chunxi Zhao, Weiyu Hou, Xucheng Zhang, Chengxiang Dong, Yizhou Mol Ther Nucleic Acids Article CRISPR-Cas12a (CRISPR-Cpf1) was reported to have multiple types of cleavage activities. Without the assistance of CRISPR RNA (crRNA), we investigated DNase activity and substrate specificity of Cas12a orthologs in the presence of diverse divalent metal ions. Cas12a from different species are capable of degrading single-stranded DNA (ssDNA) and/or double-stranded DNA (dsDNA), depending on the metal ions used. In spite of sharing high sequence similarity and functional domains among diverse Cas12a orthologs, only Acidaminococcus sp. Cas12a (AsCas12a) showed a predominant preference for cleaving ssDNA, but no detectable activity toward dsDNA substrate in the presence of magnesium (II) ions. In addition, we found that both AsCas12a and Francisella novicida Cas12a (FnCas12a) caused substantial dsDNA cleavage in the presence of manganese (II) ion. More importantly, the DNase activities can be inhibited by synthetic DNA oligonucleotides with phosphorothioate linkage modifications. Overall, ssDNase activity of the Cas12a orthologs uncovered a distinct approach for DNA cleavage compared with crRNA-guided dsDNA breaks, and provided insights into potential biological and therapeutic applications. American Society of Gene & Cell Therapy 2020-01-14 /pmc/articles/PMC7015830/ /pubmed/32045875 http://dx.doi.org/10.1016/j.omtn.2019.12.038 Text en © 2020 The Authors 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
Li, Bin
Yan, Jingyue
Zhang, Youxi
Li, Wenqing
Zeng, Chunxi
Zhao, Weiyu
Hou, Xucheng
Zhang, Chengxiang
Dong, Yizhou
CRISPR-Cas12a Possesses Unconventional DNase Activity that Can Be Inactivated by Synthetic Oligonucleotides
title CRISPR-Cas12a Possesses Unconventional DNase Activity that Can Be Inactivated by Synthetic Oligonucleotides
title_full CRISPR-Cas12a Possesses Unconventional DNase Activity that Can Be Inactivated by Synthetic Oligonucleotides
title_fullStr CRISPR-Cas12a Possesses Unconventional DNase Activity that Can Be Inactivated by Synthetic Oligonucleotides
title_full_unstemmed CRISPR-Cas12a Possesses Unconventional DNase Activity that Can Be Inactivated by Synthetic Oligonucleotides
title_short CRISPR-Cas12a Possesses Unconventional DNase Activity that Can Be Inactivated by Synthetic Oligonucleotides
title_sort crispr-cas12a possesses unconventional dnase activity that can be inactivated by synthetic oligonucleotides
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7015830/
https://www.ncbi.nlm.nih.gov/pubmed/32045875
http://dx.doi.org/10.1016/j.omtn.2019.12.038
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