The sequence specificity and programmability of DNA binding and cleavage have enabled widespread applications of CRISPR-Cas12a in genetic engineering. As an RNA-guided CRISPR endonuclease, Cas12a engages a 20-base pair (bp) DNA segment by forming a three-stranded R-loop structure in which the guide RNA hybridizes to the DNA target. Here we use single-molecule torque spectroscopy to investigate the dynamics and mechanics of R-loop formation of two widely used Cas12a orthologs at base-pair resolution. We directly observe kinetic intermediates corresponding to a ~5âbp initial RNA-DNA hybridization and a ~17âbp intermediate preceding R-loop completion, followed by transient DNA unwinding that extends beyond the 20 bp R-loop. The complex multistate landscape of R-loop formation is ortholog-dependent and shaped by target sequence, mismatches, and DNA supercoiling. A four-state kinetic model captures essential features of Cas12a R-loop dynamics and provides a biophysical framework for understanding Cas12a activity and specificity.
Dynamic basis of supercoiling-dependent DNA interrogation by Cas12a via R-loop intermediates.
Cas12a 通过 R 环中间体对超螺旋依赖性 DNA 进行动态探测的动态基础
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作者:Aris Kevin D P, Cofsky Joshua C, Shi Honglue, Al-Sayyad Noor, Ivanov Ivan E, Balaji Ashwin, Doudna Jennifer A, Bryant Zev
| 期刊: | Nature Communications | 影响因子: | 15.700 |
| 时间: | 2025 | 起止号: | 2025 Mar 26; 16(1):2939 |
| doi: | 10.1038/s41467-025-57703-y | ||
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