Structural and kinetic insights into a metagenomics-derived Cas12a with high specificity
Wright, J. T.; Yendluri, S.; Thomas, N. C.; Butterfield, C. N.; Dangerfield, T. L.; Taylor, D. W.
Show abstract
CRISPR-Cas12a nucleases provide an attractive alternative to Cas9 due to their compact RNA scaffold, T-rich PAM requirement, and improved target specificity. However, the mechanistic features that govern activity and discrimination across Cas12a orthologs remain incompletely understood. Here, we characterize Cas12a-MG29-1, a highly active and specific nuclease identified through metagenomic mining, using cryogenic electron microscopy, mutational analysis, and kinetic modeling. The Cas12a-MG29-1 structure reveals repositioned flexible loops near the distal end of the R-loop, including reduced engagement of one loop region and additional contacts formed by a second distal loop. Structure-guided mutagenesis and loop-swap experiments indicate that distal R-loop architecture modulates target discrimination in a context-dependent manner. Single-turnover cleavage and stopped-flow measurements show that Cas12a-MG29-1 and AsCas12a form reversible R-loops with similar kinetics but differ in strand cleavage following R-loop formation. Global kinetic modeling demonstrates that Cas12a-MG29-1 exhibits accelerated non-target strand cleavage, shifting kinetic partitioning toward product formation. This faster irreversible commitment provides a mechanistic explanation for enhanced activity and specificity without altering initial target interrogation. Together, these findings identify distal R-loop interactions and catalytic commitment as key determinants of Cas12a function and provide a framework for interpreting and engineering next-generation Cas12a orthologs.
Matching journals
The top 5 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Structural and mechanistic insights into activation of the human RNA ligase RTCB by Archease 97%
- Structural coordination between active sites of a Cas6-reverse transcriptase-Cas1--Cas2 CRISPR integrase complex 97%
- Structural and molecular basis for Cardiovirus 2A protein as a viral gene expression switch 97%
Similar papers in this journal
- Human Pumilio proteins use fuzzy multivalent hydrophobic interactions to recruit the CCR4-NOT deadenylase complex to repress mRNAs 96%
- The mechanism of peptidoglycan O-acetylation in Gram-negative bacteria typifies bacterial MBOAT-SGNH acyltransferases 95%
- Structural basis of substrate specificity of Helix pomatia AMP deaminase and a chimeric ADGF adenosine deaminase 95%
Similar papers in this journal
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.