Literature DB >> 20077114

Molecular cloning and characterization of the novel acidic xylanase XYLD from Bispora sp. MEY-1 that is homologous to family 30 glycosyl hydrolases.

Huiying Luo1, Jun Yang, Jiang Li, Pengjun Shi, Huoqing Huang, Yingguo Bai, Yunliu Fan, Bin Yao.   

Abstract

We cloned and sequenced a xylanase gene named xylD from the acidophilic fungus Bispora sp. MEY-1 and expressed the gene in Pichia pastoris. The 1,422-bp full-length complementary DNA fragment encoded a 457-amino acid xylanase with a calculated molecular mass of 49.8 kDa. The mature protein of XYLD showed high sequence similarity to both glycosyl hydrolase (GH) families 5 and 30 but was more homologous to members of GH 30 based on phylogenetic analysis. XYLD shared the highest identity (49.9%) with a putative endo-1,6-beta-D-glucanase from Talaromyces stipitatus and exhibited 21.1% identity and 34.3% similarity to the well-characterized GH family 5 xylanase from Erwinia chrysanthemi. Purified recombinant XYLD showed maximal activity at pH 3.0 and 60 degrees C, maintained more than 60% of maximal activity when assayed at pH 1.5-4.0, and had good thermal stability at 60 degrees C and remained stable at pH 1.0-6.0. The enzyme activity was enhanced in the presence of Ni(2+) and beta-mercaptoethanol and inhibited by some metal irons (Hg(2+), Cu(2+), Pb(2+), Mn(2+), Li(+), and Fe(3+)) and sodium dodecyl sulfate. The specific activity of XYLD for beechwood xylan, birchwood xylan, 4-O-methyl-D-glucuronoxylan, and oat spelt xylan was 2,463, 2,144, 2,020, and 1,429 U mg(-1), respectively. The apparent K (m) and V (max) values for beechwood xylan were 5.6 mg ml(-1) and 3,622 micromol min(-1) mg(-1), respectively. The hydrolysis products of different xylans were mainly xylose and xylobiose.

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Year:  2010        PMID: 20077114     DOI: 10.1007/s00253-009-2410-0

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


  21 in total

1.  GH30 Glucuronoxylan-Specific Xylanase from Streptomyces turgidiscabies C56.

Authors:  Tomoko Maehara; Haruka Yagi; Tomoko Sato; Mayumi Ohnishi-Kameyama; Zui Fujimoto; Kei Kamino; Yoshiaki Kitamura; Franz St John; Katsuro Yaoi; Satoshi Kaneko
Journal:  Appl Environ Microbiol       Date:  2018-01-31       Impact factor: 4.792

Review 2.  Fungi, a neglected component of acidophilic biofilms: do they have a potential for biotechnology?

Authors:  Martina Hujslová; Lukáš Bystrianský; Oldřich Benada; Milan Gryndler
Journal:  Extremophiles       Date:  2019-03-06       Impact factor: 2.395

3.  Modular glucuronoxylan-specific xylanase with a family CBM35 carbohydrate-binding module.

Authors:  Susana Valeria Valenzuela; Pilar Diaz; F I Javier Pastor
Journal:  Appl Environ Microbiol       Date:  2012-03-23       Impact factor: 4.792

4.  Improving the thermostability of a mesophilic family 10 xylanase, AuXyn10A, from Aspergillus usamii by in silico design.

Authors:  Junqing Wang; Zhongbiao Tan; Minchen Wu; Jianfang Li; Jing Wu
Journal:  J Ind Microbiol Biotechnol       Date:  2014-05-31       Impact factor: 3.346

5.  Extremely Acidic Soils are Dominated by Species-Poor and Highly Specific Fungal Communities.

Authors:  Martina Hujslová; Alena Kubátová; Petra Bukovská; Milada Chudíčková; Miroslav Kolařík
Journal:  Microb Ecol       Date:  2016-09-29       Impact factor: 4.552

6.  Expression of a family 10 xylanase gene from Aspergillus usamii E001 in Pichia pastoris and characterization of the recombinant enzyme.

Authors:  Jun-Qing Wang; Xin Yin; Min-Chen Wu; Hui-Min Zhang; Shu-Juan Gao; Jing-Tu Wei; Cun-Duo Tang; Jian-Fang Li
Journal:  J Ind Microbiol Biotechnol       Date:  2012-10-05       Impact factor: 3.346

7.  Structural and functional characterization of a bifunctional GH30-7 xylanase B from the filamentous fungus Talaromyces cellulolyticus.

Authors:  Yusuke Nakamichi; Thierry Fouquet; Shotaro Ito; Masahiro Watanabe; Akinori Matsushika; Hiroyuki Inoue
Journal:  J Biol Chem       Date:  2019-01-17       Impact factor: 5.157

8.  A new acidophilic endo-β-1,4-xylanase from Penicillium oxalicum: cloning, purification, and insights into the influence of metal ions on xylanase activity.

Authors:  Hanpeng Liao; Shaowei Sun; Pan Wang; Wenli Bi; Shiyong Tan; Zhong Wei; Xinlan Mei; Dongyang Liu; Waseem Raza; Qirong Shen; Yangchun Xu
Journal:  J Ind Microbiol Biotechnol       Date:  2014-05-13       Impact factor: 3.346

9.  A novel bacterial GH30 xylobiohydrolase from Hungateiclostridium clariflavum.

Authors:  Katarína Šuchová; Vladimír Puchart; Peter Biely
Journal:  Appl Microbiol Biotechnol       Date:  2020-11-20       Impact factor: 4.813

10.  GH30-7 Endoxylanase C from the Filamentous Fungus Talaromyces cellulolyticus.

Authors:  Yusuke Nakamichi; Tatsuya Fujii; Thierry Fouquet; Akinori Matsushika; Hiroyuki Inoue
Journal:  Appl Environ Microbiol       Date:  2019-10-30       Impact factor: 4.792

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