Author Correction: Adenine transversion editors enable precise, efficient A•T-to-C•G base editing in mammalian cells and embryos
Liang Chen(Nanjing University of Information Science and Technology), Dali Li(East China Normal University), Changwei Li(Georgia College & State University), Changming Luan(East China Normal University), Peyton B. Randolph(Broad Institute), Yuting Guan(East China Normal University), Gaojie Song(East China Normal University), Gaomeng Ru(East China Normal University), Yifan Zhu(Xi’an Jiaotong-Liverpool University), Hongyi Gao(East China Normal University), David R. Liu(Broad Institute), Dujuan Zhang(East China Normal University), Xinyuan Guo(East China Normal University), Bo Feng(University of Hong Kong), Shun Zhang(East China Normal University), Chao Qu(East China Normal University), Mingyao Liu(Texas A&M Health Science Center), Jun Wu(South China Agricultural University), Alexander A. Sousa(Broad Institute), Liren Wang(London Rebuilding Society), Mengjia Hong(East China Normal University)
Cited by 2
Related Papers
CRISPResso2 provides accurate and rapid genome editing sequence analysis
|Nature Biotechnology|2019|1.8k
Cationic lipid-mediated delivery of proteins enables efficient protein-based genome editing in vitro and in vivo
|Nature Biotechnology|2014|1.5k
Enhanced proofreading governs CRISPR–Cas9 targeting accuracy
|Nature|2017|1.2k
Novel genetic associations for blood pressure identified via gene-alcohol interaction in up to 570K individuals across multiple ancestries
|PLoS ONE|2018|1.2k
Prime genome editing in rice and wheat
|Nature Biotechnology|2020|867