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December 12, 2017Molecules276 citationsOpen Access

Rational Engineering of a Flavoprotein Oxidase for Improved Direct Oxidation of Alcohols to Carboxylic Acids

MPMathias PicklUniversity of GrazCWChristoph K. WinklerUniversity of GrazSGSilvia M. GlueckAustrian Centre of Industrial Biotechnology (Austria)

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Abstract

The oxidation of alcohols to the corresponding carbonyl or carboxyl compounds represents a convenient strategy for the selective introduction of electrophilic carbon centres into carbohydrate-based starting materials. The O2-dependent oxidation of prim-alcohols by flavin-containing alcohol oxidases often yields mixtures of aldehyde and carboxylic acid, which is due to “over-oxidation” of the aldehyde hydrate intermediate. In order to directly convert alcohols into carboxylic acids, rational engineering of 5-(hydroxymethyl)furfural oxidase was performed. In an attempt to improve the binding of the aldehyde hydrate in the active site to boost aldehyde-oxidase activity, two active-site residues were exchanged for hydrogen-bond-donating and -accepting amino acids. Enhanced over-oxidation was demonstrated and Michaelis–Menten kinetics were performed to corroborate these findings.

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Cite This Study

Pickl et al. (2017) studied this question.

synapsesocial.com/papers/6a5ddfd2dec751667c709297https://doi.org/10.3390/molecules22122205
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