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Engineering miniature IscB nickase for robust base editing with broad targeting range.

Linxiao HanYueer HuQiqin MoHao YangFeng GuFang BaiYadong SunSusan J Baserga
Published in: Nature chemical biology (2024)
IscB has a similar domain organization to Cas9, but the small size of IscB is better suited for delivery by adeno-associated virus. To improve the low editing efficiency of OgeuIscB (IscB from human gut metagenome) in mammalian cells, we developed high-efficiency miniature base editors by engineering OgeuIscB nickase and its cognate ωRNA, termed IminiBEs. We demonstrated the robust editing efficiency of IminiCBE (67% on average) or IminiABE (52% on average). Fusing non-specific DNA-binding protein Sso7d to IminiBEs increased the editing efficiency of low-efficiency sites by around two- to threefold, and we termed it SIminiBEs. In addition, IminiCBE and SIminiCBE recognize NNRR, NNRY and NNYR target-adjacent motifs, which broaden the canonical NWRRNA target-adjacent motif sites for the wild-type IscB nickase. Overall, IminiBEs and SIminiBEs are efficient miniature base editors for site-specific genomic mutations.
Keyphrases
  • crispr cas
  • genome editing
  • high efficiency
  • wild type
  • binding protein
  • endothelial cells
  • cancer therapy
  • gene expression
  • drug delivery
  • induced pluripotent stem cells
  • dna methylation
  • heat shock protein