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Chembiochem : a European Journal of Chemical Biology|December 31, 2013
A general method for artificial metalloenzyme formation through strain-promoted azide-alkyne cycloadditionHao Yang, Poonam Srivastava, Chen Zhang, et al.Nature Communications|July 25, 2015
Engineering a dirhodium artificial metalloenzyme for selective olefin cyclopropanationPoonam Srivastava, Hao Yang, Ken Ellis-Guardiola, et al.Tetrahedron|June 7, 2014
Manganese terpyridine artificial metalloenzymes for benzylic oxygenation and olefin epoxidationChen Zhang, Poonam Srivastava, Ken Ellis-Guardiola, et al.Organometallics|April 9, 2013
Synthesis and Catalytic Activity of Amino Acids and Metallopeptides with Catalytically Active Metallocyclic Side ChainsZhihui Zhong, Hao Yang, Chen Zhang, et al.Chembiochem : a European Journal of Chemical Biology|June 23, 2015
Preparation, Characterization, and Oxygenase Activity of a Photocatalytic Artificial EnzymeYifan Gu, Ken Ellis-Guardiola, Poonam Srivastava, et al.Nature Chemistry|February 21, 2018
Evolving artificial metalloenzymes via random mutagenesisHao Yang, Alan M Swartz, Hyun June Park, et al.Biochemistry|February 21, 2019
Crystal Structure and Conformational Dynamics of Pyrococcus furiosus Prolyl OligopeptidaseKen Ellis-Guardiola, Huan Rui, Ryan L Beckner, et al.Accounts of Chemical Research|July 22, 2024
Identifying and Engineering Flavin Dependent Halogenases for Selective BiocatalysisJared C LewisCurrent Opinion in Chemical Biology|December 30, 2014
Metallopeptide catalysts and artificial metalloenzymes containing unnatural amino acidsJared C LewisAccounts of Chemical Research|March 5, 2019
Beyond the Second Coordination Sphere: Engineering Dirhodium Artificial Metalloenzymes To Enable Protein Control of Transition Metal CatalysisJared C LewisPageof 992