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Thermostable recombinant xylanases from Nonomuraea flexuosa and Thermoascus aurantiacus show distinct properties in the hydrolysis of xylans and pretreated wheat straw

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논문

Thermostable recombinant xylanases from Nonomuraea flexuosa and Thermoascus aurantiacus show distinct properties in the hydrolysis of xylans and pretreated wheat straw

학술지

Biotechnology for biofuels

저자명

Zhang, Junhua; Siika-aho, Matti; Puranen, Terhi; Tang, Ming; Tenkanen, Maija; Viikari, Liisa

초록

<P><B>Background</B></P><P>In the hydrolysis of lignocellulosic materials, thermostable enzymes decrease the amount of enzyme needed due to higher specific activity and elongate the hydrolysis time due to improved stability. For cost-efficient use of enzymes in large-scale industrial applications, high-level expression of enzymes in recombinant hosts is usually a prerequisite. The main aim of the present study was to compare the biochemical and hydrolytic properties of two thermostable recombinant glycosyl hydrolase families 10 and 11 (GH10 and GH11, respectively) xylanases with respect to their potential application in the hydrolysis of lignocellulosic substrates.</P><P><B>Results</B></P><P>The xylanases from <I>Nonomuraea flexuosa </I>(Nf Xyn11A) and from <I>Thermoascus aurantiacus </I>(Ta Xyn10A) were purified by heat treatment and gel permeation chromatography. Ta Xyn10A exhibited higher hydrolytic efficiency than Nf Xyn11A toward birchwood glucuronoxylan, insoluble oat spelt arabinoxylan and hydrothermally pretreated wheat straw, and it produced more reducing sugars. Oligosaccharides from xylobiose to xylopentaose as well as higher degree of polymerization (DP) xylooligosaccharides (XOSs), but not xylose, were released during the initial hydrolysis of xylans by Nf Xyn11A, indicating its potential for the production of XOS. The mode of action of Nf Xyn11A and Ta Xyn10A on glucuronoxylan and arabinoxylan showed typical production patterns of endoxylanases belonging to GH11 and GH10, respectively.</P><P><B>Conclusions</B></P><P>Because of its high catalytic activity and good thermostability, <I>T. aurantiacus </I>xylanase shows great potential for applications aimed at total hydrolysis of lignocellulosic materials for platform sugars, whereas <I>N. flexuosa </I>xylanase shows more significant potential for the production of XOSs.</P>

발행연도

2011

발행기관

BioMed Central

라이선스

cc-by

ISSN

1754-6834

4

페이지

pp.12-12

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논문; 2011-01-01

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