Cloning of the xynB Gene from Dictyoglomus thermophilum Rt46B.1 and Action of the Gene Product on Kraft Pulp

Author:

Morris Daniel D.12,Gibbs Moreland D.2,Chin Charles W. J.3,Koh Mei-Hsien3,Wong Ken K. Y.4,Allison Robert W.4,Nelson Peter J.3,Bergquist Peter L.12

Affiliation:

1. Centre for Gene Technology, School of Biological Sciences, University of Auckland, Auckland,1 and

2. School of Biological Sciences, Macquarie University, Sydney, New South Wales 2109,2 and

3. CSIRO Forestry and Forest Products, Ian Wark Laboratories, Clayton, Victoria 3168,3 Australia

4. PAPRO New Zealand, FRI Ltd., Rotorua,4 New Zealand; and

Abstract

ABSTRACT A two-step PCR protocol was used to identify and sequence a family 11 xylanase gene from Dictyoglomus thermophilum Rt46B.1. Family 11 xylanase consensus fragments (GXCFs) were amplified from Rt46B.1 genomic DNA by using different sets of consensus PCR primers that exhibited broad specificity for conserved motifs within fungal and/or bacterial family 11 xylanase genes. On the basis of the sequences of a representative sample of the GXCFs a single family 11 xylanase gene ( xynB ) was identified. The entire gene sequence was obtained in the second step by using genomic walking PCR to amplify Rt46B.1 genomic DNA fragments upstream and downstream of the xynB GXCF region. The putative XynB peptide ( M r , 39,800) encoded by the Rt46B.1 xynB open reading frame was a multidomain enzyme comprising an N-terminal catalytic domain ( M r , 22,000) and a possible C-terminal substrate-binding domain ( M r , 13,000) that were separated by a short serine-glycine-rich 23-amino-acid linker peptide. Seven xylanases which differed at their N and C termini were produced from different xynB expression plasmids. All seven xylanases exhibited optimum activity at pH 6.5. However, the temperature optima of the XynB xylanases varied from 70 to 85°C. Pretreatment of Pinus radiata and eucalypt kraft-oxygen pulps with XynB resulted in moderate xylan solubilization and a substantial improvement in the bleachability of these pulps.

Publisher

American Society for Microbiology

Subject

Ecology,Applied Microbiology and Biotechnology,Food Science,Biotechnology

Reference36 articles.

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3. A modular xylanase containing a novel xylan-specific binding domain;Black G. W.;Biochem. J.,1995

4. Effects of enzymatic modification on radiata pine kraft fibre wall chemistry and physical properties;Clark T. A.;Appita J.,1997

5. A modular xylanase from mesophilic Cellulomonas fimi contains the same cellulose-binding domain and thermostabilising domain as xylanases from thermophilic bacteria;Clarke J.;FEMS Microbiol. Lett.,1996

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