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Nature Chemistry|August 24, 2021
A 68-codon genetic code to incorporate four distinct non-canonical amino acids enabled by automated orthogonal mRNA designDaniel L Dunkelmann, Sebastian B Oehm, Adam T Beattie, et al.Nature Chemical Biology|August 31, 2010
Engineered diubiquitin synthesis reveals Lys29-isopeptide specificity of an OTU deubiquitinaseSatpal Virdee, Yu Ye, Duy P Nguyen, et al.Nature Methods|January 5, 2016
Genetic code expansion in stable cell lines enables encoded chromatin modificationSimon J Elsässer, Russell J Ernst, Olivia S Walker, et al.Science (New York, N.Y.)|August 31, 2019
Programmed chromosome fission and fusion enable precise large-scale genome rearrangement and assemblyKaihang Wang, Daniel de la Torre, Wesley E Robertson, et al.Nature Biotechnology|February 24, 2026
Highly mutagenic continuous evolution in E. coli using a Φ29-based orthogonal replication systemFabian B H Rehm, Kim C Liu, Rongzhen Tian, et al.Nature|February 16, 2010
Encoding multiple unnatural amino acids via evolution of a quadruplet-decoding ribosomeHeinz Neumann, Kaihang Wang, Lloyd Davis, et al.Chemistry & Biology|November 2, 2010
Genetically directing ɛ-N, N-dimethyl-L-lysine in recombinant histonesDuy P Nguyen, Maria M Garcia Alai, Satpal Virdee, et al.Chemistry & Biology|April 29, 2008
The role of 23S ribosomal RNA residue A2451 in peptide bond synthesis revealed by atomic mutagenesisKathrin Lang, Matthias Erlacher, Daniel N Wilson, et al.Chemical Science|February 9, 2024
How cycloalkane fusion enhances the cycloaddition reactivity of dibenzocyclooctynesDennis Svatunek, Anton Murnauer, Zhuoting Tan, et al.Chemistry & Biology|July 3, 2003
Progress toward an expanded eukaryotic genetic codeJason W Chin, T Ashton Cropp, Stephanie Chu, et al.Pageof 20