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Please use this identifier to cite or link to this item: http://scholars.ntou.edu.tw/handle/123456789/22446
Title: The flavin mononucleotide cofactor in alpha-hydroxyacid oxidases exerts its electrophilic/nucleophilic duality in control of the substrate-oxidation level
Authors: Lyu, Syue-Yi
Lin, Kuan-Hung
Yeh, Hsien-Wei
Li, Yi-Shan
Huang, Chun-Man
Wang, Yung-Lin
Shih, Hao-Wei
Hsu, Ning-Shian
Wu, Chang-Jer 
Li, Tsung-Lin
Keywords: electrophilic;nucleophilic duality;alpha-hydroxyacid oxidases;flavin mononucleotide;oxidative decarboxylation;monooxygenase;p-hydroxymandelate oxidase
Issue Date: 1-Oct-2019
Publisher: INT UNION CRYSTALLOGRAPHY
Journal Volume: 75
Start page/Pages: 918-929
Source: ACTA CRYSTALLOGRAPHICA SECTION D-STRUCTURAL BIOLOGY
Abstract: 
The Y128F single mutant of p-hydroxymandelate oxidase (Hmo) is capable of oxidizing mandelate to benzoate via a four-electron oxidative decarboxylation reaction. When benzoylformate (the product of the first two-electron oxidation) and hydrogen peroxide (an oxidant) were used as substrates the reaction did not proceed, suggesting that free hydrogen peroxide is not the committed oxidant in the second two-electron oxidation. How the flavin mononucleotide (FMN)-dependent four-electron oxidation reaction takes place remains elusive. Structural and biochemical explorations have shed new light on this issue. 15 high-resolution crystal structures of Hmo and its mutants liganded with or without a substrate reveal that oxidized FMN (FMNox) possesses a previously unknown electrophilic/nucleophilic duality. In the Y128F mutant the active-site perturbation ensemble facilitates the polarization of FMNox to a nucleophilic ylide, which is in a position to act on an alpha-ketoacid, forming an N5-acyl-FMNred dead-end adduct. In four-electron oxidation, an intramolecular disproportionation reaction via an N5-alkanol-FMNred C 'alpha carbanion intermediate may account for the ThDP/PLP/NADPH-independent oxidative decarboxylation reaction. A synthetic 5-deaza-FMNox cofactor in combination with an alpha-hydroxyamide or alpha-ketoamide biochemically and structurally supports the proposed mechanism.
URI: http://scholars.ntou.edu.tw/handle/123456789/22446
ISSN: 2059-7983
DOI: 10.1107/S2059798319011938
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