A new acidophilic thermostable endo-1,4-β-mannanase from Penicillium oxalicum GZ-2: cloning, characterization and functional expression in Pichia pastoris

被引:41
|
作者
Liao, Hanpeng [1 ]
Li, Shuixian [1 ]
Zheng, Haiping [1 ]
Wei, Zhong [1 ]
Liu, Dongyang [1 ]
Raza, Waseem [1 ]
Shen, Qirong [1 ]
Xu, Yangchun [1 ]
机构
[1] Nanjing Agr Univ, Jiangsu Collaborat Innovat Ctr Solid Organ Waste, Coll Resources & Environm Sci, Nanjing 210095, Jiangsu, Peoples R China
来源
BMC BIOTECHNOLOGY | 2014年 / 14卷
关键词
Endo-1,4-beta-mannanase; Gene cloning; Expression system; Pichia pastoris; Penicillium oxalicum; ACIDIC BETA-MANNANASE; BIOTECHNOLOGICAL APPLICATIONS; RECOMBINANT EXPRESSION; ESCHERICHIA-COLI; BINDING MODULE; GENE CLONING; GUAR GUM; ENDO-BETA-1,4-MANNANASE; PURIFICATION; FUNGUS;
D O I
10.1186/s12896-014-0090-z
中图分类号
Q81 [生物工程学(生物技术)]; Q93 [微生物学];
学科分类号
071005 ; 0836 ; 090102 ; 100705 ;
摘要
Background: Endo-1,4-beta-mannanase is an enzyme that can catalyze the random hydrolysis of beta-1, 4-mannosidic linkages in the main chain of mannans, glucomannans and galactomannans and has a number of applications in different biotechnology industries. Penicillium oxalicum is a powerful hemicellulase-producing fungus (Bioresour Technol 123: 117-124, 2012); however, few previous studies have focused on the cloning and expression of the endo-1,4-beta-mannanase gene from Penicillium oxalicum. Results: A gene encoding an acidophilic thermostable endo-1,4-beta-mannanase (E. C. 3.2.1.78) from Penicillium oxalicum GZ-2, which belongs to glycoside hydrolase family 5, was cloned and successfully expressed in Pichia pastoris GS115. A high enzyme activity (84.4 U mL(-1)) was detected in the culture supernatant. The recombinant endo-1,4-beta-mannanase (rPoMan5A) was tagged with 6 x His at its C-terminus and purified using a Ni-NTA Sepharose column to apparent homogeneity. The purified rPoMan5A showed a single band on SDS-PAGE with a molecular mass of approximately 61.6 kDa. The specific activity of the purified rPoMan5A was 420.9 U mg(-1) using locust bean gum as substrate. The optimal catalytic temperature (10 min assay) and pH value for rPoMan5A are 80 degrees C and pH 4.0, respectively. The rPoMan5A is highly thermostable with a half-life of approximately 58 h at 60 degrees C at pH 4.0. The K-m and V-max values for locust bean gum, konjac mannan, and guar gum are 7.6 mg mL(-1) and 1425.5 mu mol min(-1) mg(-1), 2.1 mg mL(-1) and 154.8 mu mol min(-1) mg(-1), and 2.3 mg mL(-1) and 18.9 mu mol min(-1) mg(-1), respectively. The enzymatic activity of rPoMan5A was not significantly affected by an array of metal ions, but was inhibited by Fe3+ and Hg2+. Analytical results of hydrolytic products showed that rPoMan5A could hydrolyze various types of mannan polymers and released various mannose and manno-oligosaccharides, with the main products being mannobiose, mannotriose, and mannopentaose. Conclusion: Our study demonstrated that the high-efficient expression and secretion of acid stable and thermostable recombinant endo-1, 4-beta-mannanase in Pichia pastoris is suitable for various biotechnology applications.
引用
收藏
页数:12
相关论文
共 23 条
  • [1] A new acidophilic thermostable endo-1,4-β-mannanase from Penicillium oxalicum GZ-2: cloning, characterization and functional expression in Pichia pastoris
    Hanpeng Liao
    Shuixian Li
    Haiping Zheng
    Zhong Wei
    Dongyang Liu
    Waseem Raza
    Qirong Shen
    Yangchun Xu
    BMC Biotechnology, 14
  • [2] Production and characterization of acidophilic xylanolytic enzymes from Penicillium oxalicum GZ-2
    Liao, Hanpeng
    Xu, Chunmiao
    Tan, Shiyong
    Wei, Zhong
    Ling, Ning
    Yu, Guanghui
    Raza, Waseem
    Zhang, Ruifu
    Shen, Qirong
    Xu, Yangchun
    BIORESOURCE TECHNOLOGY, 2012, 123 : 117 - 124
  • [3] Cloning, expression in Pichia pastoris, and characterization of a thermostable GH5 mannan endo-1,4-β-mannosidase from Aspergillus niger BK01
    Do Bien-Cuong
    Dang Thi-Thu
    Berrin, Jean-Guy
    Haltrich, Dietmar
    To Kim-Anh
    Sigoillot, Jean-Claude
    Yamabhai, Montarop
    MICROBIAL CELL FACTORIES, 2009, 8
  • [4] Functional expression and characterization of an endo-1,4-β-mannosidase from Triticum aestivum in Pichia pastoris
    Zhang, Shuai-Bing
    Zhang, Wei-Ji
    Li, Na
    Zhai, Huan-Chen
    Lv, Yang-Yong
    Hu, Yuan-Sen
    Cai, Jing-Ping
    BIOLOGIA, 2020, 75 (11) : 2073 - 2081
  • [5] Gene Cloning and Enzymatic Characterization of an Alkali-Tolerant Endo-1,4-β-mannanase from Rhizomucor miehei
    Katrolia, Priti
    Yan, Qiaojuan
    Zhang, Pan
    Zhou, Peng
    Yang, Shaoqing
    Jiang, Zhengqiang
    JOURNAL OF AGRICULTURAL AND FOOD CHEMISTRY, 2013, 61 (02) : 394 - 401
  • [6] A thermotolerant Endo-1,4-β-mannanase from Trichoderma virens UKM1: Cloning, recombinant expression and characterization
    Chai, Sin Yee
    Abu Bakar, Farah Diba
    Mahadi, Nor Muhammad
    Murad, Abdul Munir Abdul
    JOURNAL OF MOLECULAR CATALYSIS B-ENZYMATIC, 2016, 125 : 49 - 57
  • [7] Secretory expression and characterization of a novel thermo-stable, salt-tolerant endo-1,4-β-mannanase of Bacillus subtilis WD23 by Pichia pastoris
    Li, Huiling
    Liu, Zuyan
    Wang, Chunlei
    Huang, Shichen
    Zhao, Min
    EUROPEAN FOOD RESEARCH AND TECHNOLOGY, 2015, 240 (04) : 671 - 677
  • [8] Cloning, Expression and Characterization of Endo-β-1,4-Mannanase from Aspergillus fumigatus in Aspergillus sojae and Pichia pastoris
    Duruksu, Goekhan
    Ozturk, Bengu
    Biely, Peter
    Bakir, Ufuk
    Ogel, Zumrut B.
    BIOTECHNOLOGY PROGRESS, 2009, 25 (01) : 271 - 276
  • [9] Overexpression and Characterization of Endo-1,4-β-xylanase from Fibrobacter succinogenes in Pichia pastoris
    Fu, T. T.
    Wang, L.
    Li, W. J.
    Chen, Y.
    APPLIED BIOCHEMISTRY AND MICROBIOLOGY, 2023, 59 (06) : 900 - 908
  • [10] Biochemical characterization and cloning of an endo-1,4-β-mannanase from Bacillus subtilis YH12 with unusually broad substrate profile
    Liu, Heng-Xia
    Gong, Jin-Song
    Li, Heng
    Lu, Zhen-Ming
    Li, Hui
    Qian, Jian-Ying
    Xu, Zheng-Hong
    Shi, Jin-Song
    PROCESS BIOCHEMISTRY, 2015, 50 (05) : 712 - 721