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Efficient base editing in methylated regions with a human APOBEC3A-Cas9 fusion.

Xiao WangJianan LiYing WangBei YangJia WeiJing WuRuixuan WangXingxu HuangJia ChenLi Yang
Published in: Nature biotechnology (2018)
Base editors (BEs) enable the generation of targeted single-nucleotide mutations, but currently used rat APOBEC1-based BEs are relatively inefficient in editing cytosines in highly methylated regions or in GpC contexts. By screening a variety of APOBEC and AID deaminases, we show that human APOBEC3A-conjugated BEs and versions we engineered to have narrower editing windows can mediate efficient C-to-T base editing in regions with high methylation levels and GpC dinucleotide content.
Keyphrases
  • crispr cas
  • genome editing
  • endothelial cells
  • induced pluripotent stem cells
  • pluripotent stem cells
  • dna methylation
  • photodynamic therapy
  • gene expression