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Closely related type II-C Cas9 orthologs recognize diverse PAMs.

Jingjing WeiLinghui HouJingtong LiuZiwen WangSiqi GaoTao QiSong GaoShuna SunYongming Wang
Published in: eLife (2022)
The RNA-guided CRISPR/Cas9 system is a powerful tool for genome editing, but its targeting scope is limited by the protospacer-adjacent motif (PAM). To expand the target scope, it is crucial to develop a CRISPR toolbox capable of recognizing multiple PAMs. Here, using a GFP-activation assay, we tested the activities of 29 type II-C orthologs closely related to Nme1Cas9, 25 of which are active in human cells. These orthologs recognize diverse PAMs with variable length and nucleotide preference, including purine-rich, pyrimidine-rich, and mixed purine and pyrimidine PAMs. We characterized in depth the activity and specificity of Nsp2Cas9. We also generated a chimeric Cas9 nuclease that recognizes a simple N 4 C PAM, representing the most relaxed PAM preference for compact Cas9s to date. These Cas9 nucleases significantly enhance our ability to perform allele-specific genome editing.
Keyphrases
  • genome editing
  • crispr cas
  • stem cells
  • cell therapy
  • gene expression
  • cancer therapy
  • dna binding