Publication | Closed Access
Electron transfer rate analysis of a site-specifically wired copper oxidase
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Citations
29
References
2018
Year
EngineeringBioelectrochemistryChemistryEnzyme ImmobilizationRedox BiologyChemical EngineeringBioenergeticsRedox ChemistryStructure-function Enzyme KineticsImmobilization OrientationBiochemistryMolecular ElectrochemistrySpectroelectrochemistryCopper OxidaseBiomolecular EngineeringElectrochemistryEnzyme CatalysisSite-specific Anchoring PointMedicineChemical Kinetics
Electron transfer kinetic parameters of site-specifically wired copper oxidase were investigated. The enzyme's orientation towards the electrode was controlled by incorporation of propargyl-l-lysine as a site-specific anchoring point. Herein, we demonstrate the importance of immobilization orientation and how it affects electron transfer efficiency and kinetics to each of the enzyme's two active sites.
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