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Updated: Sep 13, 2025

CIRCLE-Seq for Interrogation of Off-Target Gene Editing
Published on: November 1, 2024
Kinetic basis for Cas12a off-target discrimination
Yuyoung Kim1, You Hee Choi2, Minji Kim1
1Department of Medical Life Sciences, College of Medicine, The Catholic University of Korea, Seoul 06591; Department of Medical Sciences, Graduate School of The Catholic University of Korea, Seoul 06591, Korea.
Abstract:
CRISPR-Cas12a proteins are RNA-guided endonucleases classified as type V-A effectors that function similarly to Cas9, but possess distinct biochemical features. Previous studies have reported that compared to Cas9, Cas12a exhibits reduced off-target activity, yet the mechanistic origin of this high specificity remains unclear. In this study, we used singlemolecule fluorescence assays to investigate the kinetic basis for the reduced off-target effects of Cas12a. Introducing double mismatches at various positions within the target DNA enabled systematic analysis of the off-target effects on individual reaction steps in the Cas12a-mediated DNA cleavage reaction: seeding, stable R-loop formation, and DNA cleavage. Our results show that mismatches within a 17 bp PAM-proximal seed region significantly impair stable R-loop formation and subsequent cleavage, whereas mismatches in the PAM-distal region exert minimal or negligible effects. These results suggest that the low off-target tolerance of Cas12a and the resulting high on-target selectivity arise from the high sensitivity of the R-loop formation rate to DNA mismatches in the PAM-proximal region, which strongly correlates with cleavage efficiency. This work establishes R-loop formation as a conformational checkpoint for specific target cleavage, and provides a mechanistic framework to improve the fidelity of genome editing. [BMB Reports 2025; 58(8): 364-368].
Insights
CRISPR-Cas12a gene editing shows high specificity due to its sensitivity to DNA mismatches in the seed region, which controls R-loop formation and cleavage efficiency.
Area of Science:
- Molecular Biology
- Biochemistry
- Genetics
Background:
- CRISPR-Cas12a is an RNA-guided endonuclease with distinct biochemical properties compared to Cas9.
- Cas12a exhibits lower off-target activity than Cas9, but the underlying mechanism is not fully understood.
Purpose of the Study:
- To investigate the kinetic basis for CRISPR-Cas12a's reduced off-target effects.
- To elucidate the role of R-loop formation in Cas12a's target specificity.
Main Methods:
- Single-molecule fluorescence assays were employed to analyze the Cas12a DNA cleavage reaction.
- Systematic analysis of double-mismatch effects on seeding, R-loop formation, and cleavage.
Main Results:
- Mismatches in the PAM-proximal seed region significantly impede R-loop formation and DNA cleavage.
- Mismatches in the PAM-distal region have minimal impact on Cas12a activity.
- R-loop formation rate sensitivity to seed region mismatches correlates strongly with cleavage efficiency.
Conclusions:
- CRISPR-Cas12a's high specificity arises from the R-loop formation checkpoint's sensitivity to DNA mismatches.
- R-loop formation acts as a critical conformational checkpoint for precise target cleavage.
- This mechanistic understanding can guide the development of higher-fidelity genome editing tools.
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