Publication | Open Access
Structural Basis of Substrate Conversion in a New Aromatic Peroxygenase
141
Citations
41
References
2013
Year
Aldehyde DehydrogenaseAldo-keto ReductaseBiochemistryNatural SciencesBiocatalysisEnzyme CatalysisMolecular BiologyOrganic ChemistryCytochrome P450Substrate ConversionFungal Aromatic PeroxygenaseChemical BiologyStructure-function Enzyme KineticsRedox BiologyDeoxygenationAromatic Peroxygenases
Aromatic peroxygenases (APOs) represent a unique oxidoreductase sub-subclass of heme proteins with peroxygenase and peroxidase activity and were thus recently assigned a distinct EC classification (EC 1.11.2.1). They catalyze, inter alia, oxyfunctionalization reactions of aromatic and aliphatic hydrocarbons with remarkable regio- and stereoselectivities. When compared with cytochrome P450, APOs appear to be the choice enzymes for oxyfunctionalizations in organic synthesis due to their independence from a cellular environment and their greater chemical versatility. Here, the first two crystal structures of a heavily glycosylated fungal aromatic peroxygenase (AaeAPO) are described. They reveal different pH-dependent ligand binding modes. We model the fitting of various substrates in AaeAPO, illustrating the way the enzyme oxygenates polycyclic aromatic hydrocarbons. Spatial restrictions by a phenylalanine pentad in the active-site environment govern substrate specificity in AaeAPO.
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