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Nature Chemistry|June 13, 2018
Catalytic promiscuity enabled by photoredox catalysis in nicotinamide-dependent oxidoreductasesKyle F Biegasiewicz, Simon J Cooper, Megan A Emmanuel, et al.
ACS Central Science|September 26, 2015
Enantioselective Enzyme-Catalyzed Aziridination Enabled by Active-Site Evolution of a Cytochrome P450Christopher C Farwell, Ruijie K Zhang, John A McIntosh, et al.
Journal of the American Chemical Society|November 16, 2021
Photoenzymatic Synthesis of α-Tertiary Amines by Engineered Flavin-Dependent "Ene"-ReductasesXin Gao, Joshua R Turek-Herman, Young Joo Choi, et al.
Journal of the American Chemical Society|October 18, 2014
Enzyme-controlled nitrogen-atom transfer enables regiodivergent C-H aminationTodd K Hyster, Christopher C Farwell, Andrew R Buller, et al.
Angewandte Chemie (International Ed. in English)|April 6, 2019
Photoenzymatic Catalysis Enables Radical-Mediated Ketone Reduction in Ene-ReductasesBraddock A Sandoval, Sarah I Kurtoic, Megan M Chung, et al.
Journal of the American Chemical Society|June 11, 2021
Ground-State Electron Transfer as an Initiation Mechanism for Biocatalytic C-C Bond Forming ReactionsHaigen Fu, Heather Lam, Megan A Emmanuel, et al.
Nature|August 11, 2022
An asymmetric sp3-sp3 cross-electrophile coupling using 'ene'-reductasesHaigen Fu, Jingzhe Cao, Tianzhang Qiao, et al.
ACS Catalysis|December 7, 2023
Evidence of a Distinctive Enantioselective Binding Mode for the Photoinduced Radical Cyclization of α-Chloroamides in Ene-ReductasesMatteo Capone, Gianluca Dell'Orletta, Bryce T Nicholls, et al.
Journal of the American Chemical Society|June 12, 2026
Asymmetric Hydroamination Using Oxidative Radical Initiation in Flavin EnzymesAlexandra C Brown, Carlos E Del Angel Aguilar, Felix C Raps, et al.
Journal of the American Chemical Society|September 14, 2022
Photoenzymatic Catalysis in a New Light: Gluconobacter "Ene"-Reductase Conjugates Possessing High-Energy Reactivity with Tunable Low-Energy ExcitationPaul T Cesana, Claire G Page, Dvir Harris, et al.
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