Literature DB >> 19143837

Improving thermostability and catalytic activity of pyranose 2-oxidase from Trametes multicolor by rational and semi-rational design.

Oliver Spadiut1, Christian Leitner, Clara Salaheddin, Balázs Varga, Beata G Vertessy, Tien-Chye Tan, Christina Divne, Dietmar Haltrich.   

Abstract

The fungal homotetrameric flavoprotein pyranose 2-oxidase (P2Ox; EC 1.1.3.10) catalyses the oxidation of various sugars at position C2, while, concomitantly, electrons are transferred to oxygen as well as to alternative electron acceptors (e.g. oxidized ferrocenes). These properties make P2Ox an interesting enzyme for various biotechnological applications. Random mutagenesis has previously been used to identify variant E542K, which shows increased thermostability. In the present study, we selected position Leu537 for saturation mutagenesis, and identified variants L537G and L537W, which are characterized by a higher stability and improved catalytic properties. We report detailed studies on both thermodynamic and kinetic stability, as well as the kinetic properties of the mutational variants E542K, E542R, L537G and L537W, and the respective double mutants (L537G/E542K, L537G/E542R, L537W/E542K and L537W/E542R). The selected substitutions at positions Leu537 and Glu542 increase the melting temperature by approximately 10 and 14 degrees C, respectively, relative to the wild-type enzyme. Although both wild-type and single mutants showed first-order inactivation kinetics, thermal unfolding and inactivation was more complex for the double mutants, showing two distinct phases, as revealed by microcalorimetry and CD spectroscopy. Structural information on the variants does not provide a definitive answer with respect to the stabilizing effects or the alteration of the unfolding process. Distinct differences, however, are observed for the P2Ox Leu537 variants at the interfaces between the subunits, which results in tighter association.

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Year:  2009        PMID: 19143837     DOI: 10.1111/j.1742-4658.2008.06823.x

Source DB:  PubMed          Journal:  FEBS J        ISSN: 1742-464X            Impact factor:   5.542


  17 in total

1.  Improving the thermostability and catalytic efficiency of Bacillus deramificans pullulanase by site-directed mutagenesis.

Authors:  Xuguo Duan; Jian Chen; Jing Wu
Journal:  Appl Environ Microbiol       Date:  2013-04-26       Impact factor: 4.792

2.  Hot or not? Discovery and characterization of a thermostable alditol oxidase from Acidothermus cellulolyticus 11B.

Authors:  Remko T Winter; Dominic P H M Heuts; Egon M A Rijpkema; Edwin van Bloois; Hein J Wijma; Marco W Fraaije
Journal:  Appl Microbiol Biotechnol       Date:  2012-01-11       Impact factor: 4.813

3.  A conserved active-site threonine is important for both sugar and flavin oxidations of pyranose 2-oxidase.

Authors:  Warintra Pitsawong; Jeerus Sucharitakul; Methinee Prongjit; Tien-Chye Tan; Oliver Spadiut; Dietmar Haltrich; Christina Divne; Pimchai Chaiyen
Journal:  J Biol Chem       Date:  2010-01-20       Impact factor: 5.157

4.  Characterisation of recombinant pyranose oxidase from the cultivated mycorrhizal basidiomycete Lyophyllum shimeji (hon-shimeji).

Authors:  Clara Salaheddin; Yoshimitsu Takakura; Masako Tsunashima; Barbara Stranzinger; Oliver Spadiut; Montarop Yamabhai; Clemens K Peterbauer; Dietmar Haltrich
Journal:  Microb Cell Fact       Date:  2010-07-14       Impact factor: 5.328

5.  The impact of technical failures on recombinant production of soluble proteins in Escherichia coli: a case study on process and protein robustness.

Authors:  Alexander Pekarsky; Melanie Reininger; Oliver Spadiut
Journal:  Bioprocess Biosyst Eng       Date:  2021-01-24       Impact factor: 3.210

6.  Knockout of an endogenous mannosyltransferase increases the homogeneity of glycoproteins produced in Pichia pastoris.

Authors:  Florian W Krainer; Christoph Gmeiner; Lukas Neutsch; Markus Windwarder; Robert Pletzenauer; Christoph Herwig; Friedrich Altmann; Anton Glieder; Oliver Spadiut
Journal:  Sci Rep       Date:  2013-11-20       Impact factor: 4.379

7.  Engineering pyranose 2-oxidase for modified oxygen reactivity.

Authors:  Dagmar Brugger; Iris Krondorfer; Christopher Shelswell; Benjamin Huber-Dittes; Dietmar Haltrich; Clemens K Peterbauer
Journal:  PLoS One       Date:  2014-10-08       Impact factor: 3.240

8.  Engineering the Turnover Stability of Cellobiose Dehydrogenase toward Long-Term Bioelectronic Applications.

Authors:  Andreas F Geiss; Thomas M B Reichhart; Barbara Pejker; Esther Plattner; Peter L Herzog; Christopher Schulz; Roland Ludwig; Alfons K G Felice; Dietmar Haltrich
Journal:  ACS Sustain Chem Eng       Date:  2021-05-12       Impact factor: 9.224

9.  Purification and basic biochemical characterization of 19 recombinant plant peroxidase isoenzymes produced in Pichia pastoris.

Authors:  Florian W Krainer; Robert Pletzenauer; Laura Rossetti; Christoph Herwig; Anton Glieder; Oliver Spadiut
Journal:  Protein Expr Purif       Date:  2013-12-14       Impact factor: 1.650

10.  Structural basis for binding of fluorinated glucose and galactose to Trametes multicolor pyranose 2-oxidase variants with improved galactose conversion.

Authors:  Tien Chye Tan; Oliver Spadiut; Rosaria Gandini; Dietmar Haltrich; Christina Divne
Journal:  PLoS One       Date:  2014-01-21       Impact factor: 3.240

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