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High-Throughput Profiling of Cas12a Orthologues and Engineered Variants for Enhanced Genome Editing Activity

CRISPR/Cas12a (formerly Cpf1), an RNA-guided endonuclease of the Class II Type V-A CRISPR system, provides a promising tool for genome engineering. Over 10 Cas12a orthologues have been identified and employed for gene editing in human cells. However, the functional diversity among emerging Cas12a or...

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Autores principales: Zhu, Dan, Wang, Junyi, Yang, Di, Xi, Jianzhong, Li, Juan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8706968/
https://www.ncbi.nlm.nih.gov/pubmed/34948095
http://dx.doi.org/10.3390/ijms222413301
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author Zhu, Dan
Wang, Junyi
Yang, Di
Xi, Jianzhong
Li, Juan
author_facet Zhu, Dan
Wang, Junyi
Yang, Di
Xi, Jianzhong
Li, Juan
author_sort Zhu, Dan
collection PubMed
description CRISPR/Cas12a (formerly Cpf1), an RNA-guided endonuclease of the Class II Type V-A CRISPR system, provides a promising tool for genome engineering. Over 10 Cas12a orthologues have been identified and employed for gene editing in human cells. However, the functional diversity among emerging Cas12a orthologues remains poorly explored. Here, we report a high-throughput comparative profiling of editing activities across 16 Cas12a orthologues in human cells by constructing genome-integrated, self-cleaving, paired crRNA–target libraries containing >40,000 guide RNAs. Three Cas12a candidates exhibited promising potential owing to their compact structures and editing efficiency comparable with those of AsCas12a and LbCas12a, which are well characterized. We generated three arginine substitution variants (3Rv) via structure-guided protein engineering: BsCas12a-3Rv (K155R/N512R/K518R), PrCas12a-3Rv (E162R/N519R/K525R), and Mb3Cas12a-3Rv (D180R/N581R/K587R). All three Cas12a variants showed enhanced editing activities and expanded targeting ranges (NTTV, NTCV, and TRTV) compared with the wild-type Cas12a effectors. The base preference analysis among the three Cas12a variants revealed that PrCas12a-3Rv shows the highest activity at target sites with canonical PAM TTTV and non-canonical PAM TTCV, while Mb3Cas12a-3Rv exhibits recognition features distinct from the others by accommodating for more nucleotide A at position [Formula: see text] for PAM TATV and at position [Formula: see text] for PAM ATCV. Thus, the expanded Cas12a toolbox and an improved understanding of Cas12a activities should facilitate their use in genome engineering.
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spelling pubmed-87069682021-12-25 High-Throughput Profiling of Cas12a Orthologues and Engineered Variants for Enhanced Genome Editing Activity Zhu, Dan Wang, Junyi Yang, Di Xi, Jianzhong Li, Juan Int J Mol Sci Article CRISPR/Cas12a (formerly Cpf1), an RNA-guided endonuclease of the Class II Type V-A CRISPR system, provides a promising tool for genome engineering. Over 10 Cas12a orthologues have been identified and employed for gene editing in human cells. However, the functional diversity among emerging Cas12a orthologues remains poorly explored. Here, we report a high-throughput comparative profiling of editing activities across 16 Cas12a orthologues in human cells by constructing genome-integrated, self-cleaving, paired crRNA–target libraries containing >40,000 guide RNAs. Three Cas12a candidates exhibited promising potential owing to their compact structures and editing efficiency comparable with those of AsCas12a and LbCas12a, which are well characterized. We generated three arginine substitution variants (3Rv) via structure-guided protein engineering: BsCas12a-3Rv (K155R/N512R/K518R), PrCas12a-3Rv (E162R/N519R/K525R), and Mb3Cas12a-3Rv (D180R/N581R/K587R). All three Cas12a variants showed enhanced editing activities and expanded targeting ranges (NTTV, NTCV, and TRTV) compared with the wild-type Cas12a effectors. The base preference analysis among the three Cas12a variants revealed that PrCas12a-3Rv shows the highest activity at target sites with canonical PAM TTTV and non-canonical PAM TTCV, while Mb3Cas12a-3Rv exhibits recognition features distinct from the others by accommodating for more nucleotide A at position [Formula: see text] for PAM TATV and at position [Formula: see text] for PAM ATCV. Thus, the expanded Cas12a toolbox and an improved understanding of Cas12a activities should facilitate their use in genome engineering. MDPI 2021-12-10 /pmc/articles/PMC8706968/ /pubmed/34948095 http://dx.doi.org/10.3390/ijms222413301 Text en © 2021 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Zhu, Dan
Wang, Junyi
Yang, Di
Xi, Jianzhong
Li, Juan
High-Throughput Profiling of Cas12a Orthologues and Engineered Variants for Enhanced Genome Editing Activity
title High-Throughput Profiling of Cas12a Orthologues and Engineered Variants for Enhanced Genome Editing Activity
title_full High-Throughput Profiling of Cas12a Orthologues and Engineered Variants for Enhanced Genome Editing Activity
title_fullStr High-Throughput Profiling of Cas12a Orthologues and Engineered Variants for Enhanced Genome Editing Activity
title_full_unstemmed High-Throughput Profiling of Cas12a Orthologues and Engineered Variants for Enhanced Genome Editing Activity
title_short High-Throughput Profiling of Cas12a Orthologues and Engineered Variants for Enhanced Genome Editing Activity
title_sort high-throughput profiling of cas12a orthologues and engineered variants for enhanced genome editing activity
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8706968/
https://www.ncbi.nlm.nih.gov/pubmed/34948095
http://dx.doi.org/10.3390/ijms222413301
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