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Nature Biotechnology|May 13, 2020
Prime genome editing in rice and wheatQiupeng Lin, Yuan Zong, Chenxiao Xue, et al.Nature|February 16, 2019
Author Correction: Predictable and precise template-free CRISPR editing of pathogenic variantsMax W Shen, Mandana Arbab, Jonathan Y Hsu, et al.Science Translational Medicine|June 5, 2020
In vivo base editing restores sensory transduction and transiently improves auditory function in a mouse model of recessive deafnessWei-Hsi Yeh, Olga Shubina-Oleinik, Jonathan M Levy, et al.Advanced Healthcare Materials|June 22, 2013
Immobilization of actively thromboresistant assemblies on sterile blood-contacting surfacesZheng Qu, Venkat Krishnamurthy, Carolyn A Haller, et al.Nature|July 22, 2026
AI-redesigned starting points and outcomes enhance protein evolutionNicholas A Krasnow, Joy A Xu, Emily Zhang, et al.Molecular Cell|July 9, 2016
Sequence Determinants of Intracellular Phase Separation by Complex Coacervation of a Disordered ProteinChi W Pak, Martyna Kosno, Alex S Holehouse, et al.Science Advances|September 7, 2017
Improved base excision repair inhibition and bacteriophage Mu Gam protein yields C:G-to-T:A base editors with higher efficiency and product purityAlexis C Komor, Kevin T Zhao, Michael S Packer, et al.Nature|November 9, 2018
Predictable and precise template-free CRISPR editing of pathogenic variantsMax W Shen, Mandana Arbab, Jonathan Y Hsu, et al.Nature Biotechnology|February 12, 2020
Continuous evolution of SpCas9 variants compatible with non-G PAMsShannon M Miller, Tina Wang, Peyton B Randolph, et al.Nature Biotechnology|March 13, 2024
High-throughput evaluation of genetic variants with prime editing sensor librariesSamuel I Gould, Alexandra N Wuest, Kexin Dong, et al.Pageof 31