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Proceedings of the National Academy of Sciences of the United States of America|January 18, 2007
Structure of the monooxygenase component of a two-component flavoprotein monooxygenaseAndrea Alfieri, Francesco Fersini, Nantidaporn Ruangchan, et al.Biochemistry|April 18, 2009
Molecular and mechanistic properties of the membrane-bound mitochondrial monoamine oxidasesDale E Edmondson, Claudia Binda, Jin Wang, et al.The Journal of Biological Chemistry|April 16, 2017
Isolation and characterization of a thermostable F<sub>420</sub>:NADPH oxidoreductase from <i>Thermobifida fusca</i>Hemant Kumar, Quoc-Thai Nguyen, Claudia Binda, et al.Biochemistry|November 7, 2018
The Extreme Structural Plasticity in the CYP153 Subfamily of P450s Directs Development of Designer HydroxylasesFilippo Fiorentini, Anna-Maria Hatzl, Sandy Schmidt, et al.Journal of the American Chemical Society|November 26, 2014
Finding the switch: turning a baeyer-villiger monooxygenase into a NADPH oxidasePatrícia B Brondani, Hanna M Dudek, Christian Martinoli, et al.Current Opinion in Structural Biology|August 6, 2023
Impact of ancestral sequence reconstruction on mechanistic and structural enzymologyCallum R Nicoll, Marta Massari, Marco W Fraaije, et al.Archives of Biochemistry and Biophysics|July 4, 2017
The VAO/PCMH flavoprotein familyTom A Ewing, Marco W Fraaije, Andrea Mattevi, et al.Biochemistry|April 14, 2011
Structure-based redesign of cofactor binding in putrescine oxidaseMalgorzata M Kopacz, Stefano Rovida, Esther van Duijn, et al.Biochemistry|April 23, 2008
Structural and mechanistic studies of arylalkylhydrazine inhibition of human monoamine oxidases A and BClaudia Binda, Jin Wang, Min Li, et al.Proceedings of the National Academy of Sciences of the United States of America|August 13, 2003
Insights into the mode of inhibition of human mitochondrial monoamine oxidase B from high-resolution crystal structuresClaudia Binda, Min Li, Frantisek Hubalek, et al.Pageof 20