bioRxiv · 10.1101/2021.04.16.440202
Direct profiling of genome-wide dCas9 and Cas9 specificity using ssDNA mapping (CasKAS)
Abstract
Detecting and mitigating off-target activity is critical to the practical application of CRISPR-mediated genome and epigenome editing. While numerous methods have been developed to map Cas9 binding specificity genome-wide, they are generally time-consuming and/or expensive, and not applicable to catalytically dead CRISPR enzymes. We have developed a rapid, inexpensive, and facile assay for identifying off-target CRISPR enzyme binding and cleavage by chemically mapping the unwound single-stranded DNA structures formed upon binding of a sgRNA-loaded Cas9 protein ("CasKAS"). We demonstrate this method in both in vitro and in vivo contexts.
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Marinov, G. K., Kim, S. H., Bagdatli, S. T., Trevino, A. E., Tycko, J., Wu, T., Bintu, L., Bassik, M. C., He, C., Kundaje, A., Greenleaf, W. J.. 2021-04-17. Direct profiling of genome-wide dCas9 and Cas9 specificity using ssDNA mapping (CasKAS). https://doi.org/10.1101/2021.04.16.440202
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