Literature DB >> 18330562

Glucose oxidase: natural occurrence, function, properties and industrial applications.

Chun Ming Wong1, Kwun Hei Wong, Xiao Dong Chen.   

Abstract

Glucose oxidase (GOX) from Aspergillus niger is a well-characterised glycoprotein consisting of two identical 80-kDa subunits with two FAD co-enzymes bound. Both the DNA sequence and protein structure at 1.9 A have been determined and reported previously. GOX catalyses the oxidation of D: -glucose (C(6)H(12)O(6)) to D: -gluconolactone (C(6)H(10)O(6)) and hydrogen peroxide. GOX is produced naturally in some fungi and insects where its catalytic product, hydrogen peroxide, acts as an anti-bacterial and anti-fungal agent. GOX is Generally Regarded As Safe, and GOX from A. niger is the basis of many industrial applications. GOX-catalysed reaction removes oxygen and generates hydrogen peroxide, a trait utilised in food preservation. GOX has also been used in baking, dry egg powder production, wine production, gluconic acid production, etc. Its electrochemical activity makes it an important component in glucose sensors and potentially in fuel cell applications. This paper will give a brief background on the natural occurrence, functions as well as the properties of glucose oxidase. A good coverage on the diverse uses of glucose oxidase in the industry is presented with a brief outline on the working principles in the various settings. Furthermore, food grade GOX preparations are relatively affordable and widely available; the readers may be encouraged to explore other potential uses of GOX. One example is that GOX-catalysed reaction generates significant amount of heat (~200 kJ/mol), and this property has been mostly neglected in the various applications described so far.

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Year:  2008        PMID: 18330562     DOI: 10.1007/s00253-008-1407-4

Source DB:  PubMed          Journal:  Appl Microbiol Biotechnol        ISSN: 0175-7598            Impact factor:   4.813


  49 in total

1.  Survey of a salivary effector in caterpillars: glucose oxidase variation and correlation with host range.

Authors:  Herb Eichenseer; M C Mathews; Jaimie S Powell; Gary W Felton
Journal:  J Chem Ecol       Date:  2010-07-16       Impact factor: 2.626

2.  Contribution of flavin covalent linkage with histidine 99 to the reaction catalyzed by choline oxidase.

Authors:  Osbourne Quaye; Sharonda Cowins; Giovanni Gadda
Journal:  J Biol Chem       Date:  2009-04-27       Impact factor: 5.157

3.  Cross-linked glucose oxidase clusters for biofuel cell anode catalysts.

Authors:  Jonathan Dudzik; Wen-Chi Chang; A M Kannan; Slawomir Filipek; Sowmya Viswanathan; Pingzuo Li; V Renugopalakrishnan; Gerald F Audette
Journal:  Biofabrication       Date:  2013-07-23       Impact factor: 9.954

4.  Negative control of CSL gene transcription by stress/DNA damage response and p53.

Authors:  Elena Menietti; Xiaoying Xu; Paola Ostano; Jean-Marc Joseph; Karine Lefort; G Paolo Dotto
Journal:  Cell Cycle       Date:  2016-05-10       Impact factor: 4.534

5.  Illicium verum extracts and probiotics with added glucose oxidase promote antioxidant capacity through upregulating hepatic and jejunal Nrf2/Keap1 of weaned piglets.

Authors:  Jian Zhang; Yanjun Liu; Zaibin Yang; Weiren Yang; Libo Huang; Chang Xu; Mei Liu; Jinshan Ge; Yuxi Wang; Shuzhen Jiang
Journal:  J Anim Sci       Date:  2020-03-01       Impact factor: 3.159

6.  Cloning, heterologous expression, purification and characterization of M12 mutant of Aspergillus niger glucose oxidase in yeast Pichia pastoris KM71H.

Authors:  Gordana Kovačević; Marija Blažić; Bojana Draganić; Raluca Ostafe; Marija Gavrović-Jankulović; Rainer Fischer; Radivoje Prodanović
Journal:  Mol Biotechnol       Date:  2014-04       Impact factor: 2.695

7.  Creation of Bifunctional Indicating Complex Based on Nanodiamonds and Extracellular Oxidases of Luminous Fungus Neonothopanus nambi.

Authors:  O A Mogilnaya; N O Ronzhin; K S Artemenko; V S Bondar
Journal:  Dokl Biochem Biophys       Date:  2018-07-14       Impact factor: 0.788

8.  An improved optical tweezers assay for measuring the force generation of single kinesin molecules.

Authors:  Matthew P Nicholas; Lu Rao; Arne Gennerich
Journal:  Methods Mol Biol       Date:  2014

9.  Partial secretome analysis of Caldariomyces fumago reveals extracellular production of the CPO co-substrate H2O2 and provides a coproduction concept for CPO and glucose oxidase.

Authors:  Markus Buchhaupt; Karin Lintz; Sonja Hüttmann; Jens Schrader
Journal:  World J Microbiol Biotechnol       Date:  2018-01-10       Impact factor: 3.312

10.  Heterologous expression of glucose oxidase in the yeast Kluyveromyces marxianus.

Authors:  Saul N Rocha; José Abrahão-Neto; María E Cerdán; María I González-Siso; Andreas K Gombert
Journal:  Microb Cell Fact       Date:  2010-01-21       Impact factor: 5.328

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