The 1.6 Å Crystal Structure of Pyranose Dehydrogenase from Agaricus meleagris Rationalizes Substrate Specificity and Reveals a Flavin Intermediate
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Beyond the Protein Matrix: Probing Cofactor Variants in a Baeyer-Villiger Oxygenation Reaction.Structural basis for binding of fluorinated glucose and galactose to Trametes multicolor pyranose 2-oxidase variants with improved galactose conversionRationally engineered flavin-dependent oxidase reveals steric control of dioxygen reductionPyranose dehydrogenase ligand promiscuity: a generalized approach to simulate monosaccharide solvation, binding, and product formation.Convenient microtiter plate-based, oxygen-independent activity assays for flavin-dependent oxidoreductases based on different redox dyes.Engineering of pyranose dehydrogenase for increased oxygen reactivityEngineering pyranose 2-oxidase for modified oxygen reactivity.A Mimivirus Enzyme that Participates in Viral EntryStructural analysis of fungus-derived FAD glucose dehydrogenaseMolecular dynamics simulations give insight into D-glucose dioxidation at C2 and C3 by Agaricus meleagris pyranose dehydrogenase.Further insights into the catalytical properties of deglycosylated pyranose dehydrogenase from Agaricus meleagris recombinantly expressed in Pichia pastoris.Electrochemical characterization of the pyranose 2-oxidase variant N593C shows a complete loss of the oxidase function with full preservation of substrate (dehydrogenase) activity.An extended N-H bond, driven by a conserved second-order interaction, orients the flavin N5 orbital in cholesterol oxidase.Reaction of pyranose dehydrogenase from Agaricus meleagris with its carbohydrate substrates.Pyranose Dehydrogenase from Agaricus campestris and Agaricus xanthoderma: Characterization and Applications in Carbohydrate Conversions.Agaricus meleagris pyranose dehydrogenase: influence of covalent FAD linkage on catalysis and stability.Characterization of three pyranose dehydrogenase isoforms from the litter-decomposing basidiomycete Leucoagaricus meleagris (syn. Agaricus meleagris).Multiplicity of enzymatic functions in the CAZy AA3 family.Bacterial catabolism of β-hydroxypropiovanillone and β-hydroxypropiosyringone produced in the reductive cleavage of arylglycerol-β-aryl ether in lignin.Absolute stereochemistry of a 4 a-hydroxyriboflavin analogue of the key intermediate of the FAD-monooxygenase cycle.Optimization of a membraneless glucose/oxygen enzymatic fuel cell based on a bioanode with high coulombic efficiency and current density.
P2860
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P2860
The 1.6 Å Crystal Structure of Pyranose Dehydrogenase from Agaricus meleagris Rationalizes Substrate Specificity and Reveals a Flavin Intermediate
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The 1.6 Å Crystal Structure of ...... Reveals a Flavin Intermediate
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The 1.6 Å Crystal Structure of ...... Reveals a Flavin Intermediate
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The 1.6 Å Crystal Structure of ...... Reveals a Flavin Intermediate
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The 1.6 Å Crystal Structure of ...... Reveals a Flavin Intermediate
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The 1.6 Å Crystal Structure of ...... Reveals a Flavin Intermediate
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The 1.6 Å Crystal Structure of ...... Reveals a Flavin Intermediate
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The 1.6 Å Crystal Structure of ...... Reveals a Flavin Intermediate
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The 1.6 Å Crystal Structure of ...... Reveals a Flavin Intermediate
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The 1.6 Å Crystal Structure of ...... Reveals a Flavin Intermediate
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The 1.6 Å Crystal Structure of ...... Reveals a Flavin Intermediate
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Christoph Sygmund
Clemens K Peterbauer
Iris Krondorfer
Jeerus Sucharitakul
Thanyaporn Wongnate
Tien Chye Tan
P2860
P304
P356
10.1371/JOURNAL.PONE.0053567
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P577
2013-01-01T00:00:00Z