The rapid expansion of CRISPR-Cas gene editing enables new therapeutic strategies but complicates assessment of unintended editing risks due to emerging modalities and unclear analytical standards. We present UNCOVERseq (Unbiased Nomination of CRISPR Off-target Variants using Enhanced RhPCR), an improved in cellulo off-target nomination workflow that sensitively identifies rare off-target events using defined inputs and analytical process controls. Using an inter-method off-target confirmation benchmarking dataset, UNCOVERseq demonstrates high analytical sensitivity (97.6%) and precision (78%), outperforming published nomination methods. We apply UNCOVERseq across 192 guide RNAs and identify six guides spanning a broad specificity range, enabling relative risk assessment across S. pyogenes Cas9, high-fidelity variants, and base editors in hematopoietic stem and progenitor cells. We further show that double-strand break nomination sites retain strong rank-order concordance with single-strand break–mediated base editing. Together, these results establish UNCOVERseq as a robust framework for informed off-target risk assessment in translational gene-editing systems. CRISPR gene editing promises new therapies but raises concerns about unintended changes. Here, authors present UNCOVERseq, an in-cell method that sensitively detects rare off-target edits, benchmarks performance across editors, and improves risk assessment in therapeutic cells.
Kyle J. Kinney, Kun Jia, He Zhang et al.· Nature Communications· 3 citations
A previously unknown mechanism that steers Cas9 catalysis is uncovered and the potential to improve Cas9 fidelity by modulating guide repeat interactions is demonstrated.
Ramadevi Chilamkurthy, Sruthi Sudhakar, Adrian A. Pater et al.· Nucleic Acids Research· 0 citations