4.5 Article

Surface reconstitution of glucose oxidase onto a norbornylogous bridge self-assembled monolayer

Journal

CHEMICAL PHYSICS
Volume 324, Issue 1, Pages 226-235

Publisher

ELSEVIER
DOI: 10.1016/j.chemphys.2005.08.061

Keywords

electron transfer; glucose oxidase; norbornylogous bridge; self-assembled monolayers; protein electrochemistry

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An electrode construct was fabricated in which a self-assembled monolayer containing a novel norbornylogous bridge was covalently attached to flavin adenine dinucleotide (FAD), the redox active centre of several oxidase enzymes. The electrochemistry of the construct was investigated before and after the reconstitution of glucose oxidase around the surface bound FAD. Rapid rates of electron transfer were observed both before and after the reconstitution of biocatalytically active enzyme. However, no biocatalytic activity was observed under anaerobic conditions suggesting the a lack of enzyme turnover through direct electron transfer. It is proposed that a decrease in the electronic coupling between the redox active FAD and the electrode following reconstitution of the glucose oxidase - a probable consequence of the FAD being immersed in a protein environment - was responsible for the inability of the enzyme to be turned over under anaerobic conditions. (c) 2005 Elsevier B.V. All rights reserved.

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