Phage-assisted evolution and protein engineering yield compact, efficient prime editors
Jordan L. Doman(Broad Institute), David R. Liu(Broad Institute), Yong Tao(Shanghai Ninth People's Hospital), Xin D. Gao(Broad Institute), Mark J. Osborn(University of Minnesota), Peyton B. Randolph(Broad Institute), Monica E. Neugebauer(University of Wisconsin–Madison), Jessie R. Davis(Broad Institute), Jakub Tolar(University of Minnesota System), Amber McElroy(University of Minnesota Medical Center), Kelcee A. Everette(Broad Institute), Samagya Banskota(Broad Institute), Meirui An(Broad Institute), Smriti Pandey(Broad Institute), Aditya Raguram(Broad Institute), Kathryn Tian(Broad Institute), Michelle F. Richter(Broad Institute)
Cited by 302
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
Prime genome editing in rice and wheat
|Nature Biotechnology|2020|867