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Enzymology and Protein Engineering

Novel pH-Stable Glycoside Hydrolase Family 3 β-Xylosidase from Talaromyces amestolkiae: an Enzyme Displaying Regioselective Transxylosylation

Manuel Nieto-Domínguez, Laura I. de Eugenio, Jorge Barriuso, Alicia Prieto, Beatriz Fernández de Toro, Ángeles Canales-Mayordomo, María Jesús Martínez
D. Cullen, Editor
Manuel Nieto-Domínguez
Centro de Investigaciones Biológicas (CIB), CSIC, Madrid, Spain
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Laura I. de Eugenio
Centro de Investigaciones Biológicas (CIB), CSIC, Madrid, Spain
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Jorge Barriuso
Centro de Investigaciones Biológicas (CIB), CSIC, Madrid, Spain
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Alicia Prieto
Centro de Investigaciones Biológicas (CIB), CSIC, Madrid, Spain
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Beatriz Fernández de Toro
Centro de Investigaciones Biológicas (CIB), CSIC, Madrid, Spain
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Ángeles Canales-Mayordomo
Centro de Investigaciones Biológicas (CIB), CSIC, Madrid, Spain
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María Jesús Martínez
Centro de Investigaciones Biológicas (CIB), CSIC, Madrid, Spain
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D. Cullen
Roles: Editor
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DOI: 10.1128/AEM.01744-15
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ABSTRACT

This paper reports on a novel β-xylosidase from the hemicellulolytic fungus Talaromyces amestolkiae. The expression of this enzyme, called BxTW1, could be induced by beechwood xylan and was purified as a glycoprotein from culture supernatants. We characterized the gene encoding this enzyme as an intronless gene belonging to the glycoside hydrolase gene family 3 (GH3). BxTW1 exhibited transxylosylation activity in a regioselective way. This feature would allow the synthesis of oligosaccharides or other compounds not available from natural sources, such as alkyl glycosides displaying antimicrobial or surfactant properties. Regioselective transxylosylation, an uncommon combination, makes the synthesis reproducible, which is desirable for its potential industrial application. BxTW1 showed high pH stability and Cu2+ tolerance. The enzyme displayed a pI of 7.6, a molecular mass around 200 kDa in its active dimeric form, and Km and V max values of 0.17 mM and 52.0 U/mg, respectively, using commercial p-nitrophenyl-β-d-xylopyranoside as the substrate. The catalytic efficiencies for the hydrolysis of xylooligosaccharides were remarkably high, making it suitable for different applications in food and bioenergy industries.

FOOTNOTES

    • Received 26 May 2015.
    • Accepted 1 July 2015.
    • Accepted manuscript posted online 6 July 2015.
  • Supplemental material for this article may be found at http://dx.doi.org/10.1128/AEM.01744-15.

  • Copyright © 2015, American Society for Microbiology. All Rights Reserved.
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Novel pH-Stable Glycoside Hydrolase Family 3 β-Xylosidase from Talaromyces amestolkiae: an Enzyme Displaying Regioselective Transxylosylation
Manuel Nieto-Domínguez, Laura I. de Eugenio, Jorge Barriuso, Alicia Prieto, Beatriz Fernández de Toro, Ángeles Canales-Mayordomo, María Jesús Martínez
Applied and Environmental Microbiology Aug 2015, 81 (18) 6380-6392; DOI: 10.1128/AEM.01744-15

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Novel pH-Stable Glycoside Hydrolase Family 3 β-Xylosidase from Talaromyces amestolkiae: an Enzyme Displaying Regioselective Transxylosylation
Manuel Nieto-Domínguez, Laura I. de Eugenio, Jorge Barriuso, Alicia Prieto, Beatriz Fernández de Toro, Ángeles Canales-Mayordomo, María Jesús Martínez
Applied and Environmental Microbiology Aug 2015, 81 (18) 6380-6392; DOI: 10.1128/AEM.01744-15
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