Engineering TALE-linked deaminases to facilitate precision adenine base editing in mitochondrial DNA
Sung-Ik Cho(Seoul National University), Annie Kim(Institute for Basic Science), Jaesuk Lee(Seoul National University), Ki‐Hoan Nam(Korea Research Institute of Bioscience and Biotechnology), Kayeong Lim(Institute for Basic Science), Sang-Mi Cho(Yonsei University), Eugene Chung(Seoul National University), Hyunji Lee(Korea University), Jin‐Soo Kim(Institute for Basic Science), Ji‐Eun Kim(Hallym University), Ji Eun Kim(Korea University), Sanghun Kim(Seoul National University), Ji Min Lee(CHA University), Seongho Hong(Korea University), Seonghyun Lee(Institute for Basic Science), Min‐Kyeung Choi(Institute for Basic Science), Seunghun Han(Chungbuk National University), Young Geun Mok(Institute for Basic Science), Yeji Oh(Korea Research Institute of Bioscience and Biotechnology)
Cited by 6
Related Papers
Highly efficient RNA-guided genome editing in human cells via delivery of purified Cas9 ribonucleoproteins
|Genome Research|2014|1.9k
In vivo genome editing with a small Cas9 orthologue derived from Campylobacter jejuni
|Nature Communications|2017|736
Control of protein stability by post-translational modifications
|Nature Communications|2023|727
Genome-wide target specificity of CRISPR RNA-guided adenine base editors
|Nature Biotechnology|2019|191