Literature DB >> 15239055

Enhanced fructose oxidase activity in a galactose oxidase variant.

Sarah E Deacon1, Khaled Mahmoud, R Kate Spooner, Susan J Firbank, Peter F Knowles, Simon E V Phillips, Michael J McPherson.   

Abstract

Galactose oxidase (GO; EC 1.1.3.9) catalyses the oxidation of a wide range of primary alcohols including mono-, oligo- and polysaccharides. High-resolution structures have been determined for GO, but no structural information is available for the enzyme with bound substrate or inhibitor. Previously, computer-aided docking experiments have been used to develop a plausible model for interactions between GO and the D-galactose substrate. Residues implicated in such interactions include Arg330, Gln406, Phe464, Phe194 and Trp290. In the present study we describe an improved expression system for recombinant GO in the methylotrophic yeast Pichia pastoris. We use this system to express variant proteins mutated at Arg330 and Phe464 to explore the substrate binding model. We also demonstrate that the Arg330 variants display greater fructose oxidase activity than does wild-type GO.

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Year:  2004        PMID: 15239055     DOI: 10.1002/cbic.200300810

Source DB:  PubMed          Journal:  Chembiochem        ISSN: 1439-4227            Impact factor:   3.164


  15 in total

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Journal:  Appl Environ Microbiol       Date:  2017-09-29       Impact factor: 4.792

Review 2.  Copper active sites in biology.

Authors:  Edward I Solomon; David E Heppner; Esther M Johnston; Jake W Ginsbach; Jordi Cirera; Munzarin Qayyum; Matthew T Kieber-Emmons; Christian H Kjaergaard; Ryan G Hadt; Li Tian
Journal:  Chem Rev       Date:  2014-03-03       Impact factor: 60.622

3.  The stacking tryptophan of galactose oxidase: a second-coordination sphere residue that has profound effects on tyrosyl radical behavior and enzyme catalysis.

Authors:  Melanie S Rogers; Ejan M Tyler; Nana Akyumani; Christian R Kurtis; R Kate Spooner; Sarah E Deacon; Sarita Tamber; Susan J Firbank; Khaled Mahmoud; Peter F Knowles; Simon E V Phillips; Michael J McPherson; David M Dooley
Journal:  Biochemistry       Date:  2007-03-27       Impact factor: 3.162

4.  A survey of substrate specificity among Auxiliary Activity Family 5 copper radical oxidases.

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5.  Active-Site Engineering Switches Carbohydrate Regiospecificity in a Fungal Copper Radical Oxidase.

Authors:  Yann Mathieu; Maria E Cleveland; Harry Brumer
Journal:  ACS Catal       Date:  2022-08-05       Impact factor: 13.700

6.  A comparative summary of expression systems for the recombinant production of galactose oxidase.

Authors:  Oliver Spadiut; Lisbeth Olsson; Harry Brumer
Journal:  Microb Cell Fact       Date:  2010-09-13       Impact factor: 5.328

7.  Cross-link formation of the cysteine 228-tyrosine 272 catalytic cofactor of galactose oxidase does not require dioxygen.

Authors:  Melanie S Rogers; Ramón Hurtado-Guerrero; Susan J Firbank; Malcolm A Halcrow; David M Dooley; Simon E V Phillips; Peter F Knowles; Michael J McPherson
Journal:  Biochemistry       Date:  2008-09-05       Impact factor: 3.162

8.  Expression, purification, and characterization of galactose oxidase of Fusarium sambucinum in E. coli.

Authors:  Regina Paukner; Petra Staudigl; Withu Choosri; Dietmar Haltrich; Christian Leitner
Journal:  Protein Expr Purif       Date:  2014-12-24       Impact factor: 1.650

Review 9.  The substrate tolerance of alcohol oxidases.

Authors:  Mathias Pickl; Michael Fuchs; Silvia M Glueck; Kurt Faber
Journal:  Appl Microbiol Biotechnol       Date:  2015-07-08       Impact factor: 4.813

10.  Two Fusarium copper radical oxidases with high activity on aryl alcohols.

Authors:  Maria Cleveland; Mickael Lafond; Fan Roderick Xia; Ryan Chung; Paul Mulyk; Jason E Hein; Harry Brumer
Journal:  Biotechnol Biofuels       Date:  2021-06-16       Impact factor: 6.040

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