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Biochemistry|June 30, 2017
RutA-Catalyzed Oxidative Cleavage of the Uracil Amide Involves Formation of a Flavin-N5-oxideSanjoy Adak, Tadhg P BegleyBiochemistry|February 1, 2019
Hexachlorobenzene Catabolism Involves a Nucleophilic Aromatic Substitution and Flavin-N5-Oxide FormationSanjoy Adak, Tadhg P BegleyArchives of Biochemistry and Biophysics|August 9, 2017
Flavin-N5-oxide: A new, catalytic motif in flavoenzymologySanjoy Adak, Tadhg P BegleyNatural Product Reports|October 22, 2021
Cryptic halogenation reactions in natural product biosynthesisSanjoy Adak, Bradley S MooreJournal of the American Chemical Society|April 28, 2016
Dibenzothiophene Catabolism Proceeds via a Flavin-N5-oxide IntermediateSanjoy Adak, Tadhg P BegleyMethods in Enzymology|May 11, 2019
Flavin-N5-oxide intermediates in dibenzothiophene, uracil, and hexachlorobenzene catabolismSanjoy Adak, Tadhg P BegleyJournal of the American Chemical Society|February 10, 2022
From Tryptophan to Toxin: Nature's Convergent Biosynthetic Strategy to AetokthonotoxinSanjoy Adak, April L Lukowski, Rebecca J B Schäfer, et al.Journal of the American Chemical Society|February 12, 2025
Single-Enzyme Conversion of Tryptophan to Skatole and Cyanide Expands the Mechanistic Competence of Diiron OxidasesSanjoy Adak, Logan A Calderone, August Krueger, et al.Journal of Natural Products|July 10, 2025
Metagenomic Identification of Brominated Indole Biosynthetic Machinery from CyanobacteriaSanjoy Adak, Alexander B Chase, Anna E Skrip, et al.ACS Central Science|December 31, 2025
Vitamin B<sub>2</sub> Catabolism: Nature's Route from Riboflavin to Acetoacetate and PyruvateSreyashi Sinha, Xiaohong Jian, Sanjoy Adak, et al.Pageof 2