Abstract
Objective
To engineer Pichia pastoris for heterologous production of cellulase from Musca domestica and explore its potential for industrial applications.
Results
A new beta-glucosidase gene (bg), encoding 562 amino acids, was cloned from M. domestica by using rapid amplification of cDNA ends. The gene bg was linked to pPICZαA and expressed in P. pastoris with a yield of 500 mg l−1. The enzyme has the maximum activity with 27.6 U mg−1 towards cellulose. The beta-glucosidase has stable activity from 20 to 70 °C and can tolerate one-mole glucose. It has the maximum activities for salicin (25.9 ± 1.8 U mg−1), cellobiose (40.1 ± 2.3 U mg−1) and cellulose (27.6 ± 3.5 U mg−1). The wide-range substrate activities of the beta-glucosidase were further verified by matrix-assisted laser desorption/ionization mass spectra. Structural analysis shows that the beta-glucosidase belongs to glycoside hydrolase family Ι and possesses O-glycosylation sites.
Conclusions
Thus, a multifunctional beta-glucosidase was expressed from M. domestica and provides a potential tool for industrial application of cellulose.
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References
Colabardini AC, Valkonen M, Huuskonen A, Siika-Aho M, Koivula A, Goldman GH, Saloheimo M (2016) Expression of two novel beta-glucosidases from Chaetomium atrobrunneum in Trichoderma reesei and characterization of the heterologous protein products. Mol Biotechnol 58:821–831
Cristobal HA, Poma HR, Abate CM, Rajal VB (2016) s. Mar Biotechnol (NY) 18:396–408
Gao G, Wang A, Gong BL, Li QQ, Liu YH, He ZM, Li G (2016) A novel metagenome-derived gene cluster from termite hindgut: encoding phosphotransferase system components and high glucose tolerant glucosidase. Enzyme Microb Technol 84:24–31
Hassan Hassan Abdellatif F, Babin J, Arnal-Herault C, David L, Jonquieres A (2016) Grafting of cellulose acetate with ionic liquids for biofuel purification by a membrane process: influence of the cation. Carbohydr Polym 147:313–322
Li W, Fan H, He C, Zhang X, Wang X, Yuan J, Fang Z, Fang W, Xiao Y (2016) PspAG97A: a halophilic alpha-glucoside hydrolase with wide substrate specificity from glycoside hydrolase family 97. J Microbiol Biotechnol 26:1933–1942
Ma Y, Liu X, Yin Y, Zou C, Wang W, Zou S, Hong J, Zhang M (2015) Expression optimization and biochemical properties of two glycosyl hydrolase family 3 beta-glucosidases. J Biotechnol 206:79–88
Mei HZ, Xia DG, Zhao QL, Zhang GZ, Qiu ZY, Qian P, Lu C (2016) Molecular cloning, expression, purification and characterization of a novel cellulase gene (Bh-EGaseI) in the beetle Batocera horsfieldi. Gene 576:45–51
Mondal MI, Yeasmin MS (2016) Toxicity study of food-grade carboxymethyl cellulose synthesized from maize husk in Swiss albino mice. Int J Biol Macromol 92:965–971
Palme A, Theliander H, Brelid H (2016) Acid hydrolysis of cellulosic fibres: comparison of bleached kraft pulp, dissolving pulps and cotton textile cellulose. Carbohydr Polym 136:1281–1287
Schleicher E, Wieland OH (1978) Evaluation of the Bradford method for protein determination in body fluids. J Clin Chem Clin Biochem 16:533–534
Shelomi M, Watanabe H, Arakawa G (2014) Endogenous cellulase enzymes in the stick insect (Phasmatodea) gut. J Insect Physiol 60:25–30
Teixeira RS, da Silva AS, Ferreira-Leitao VS, da Silva Bon EP (2012) Amino acids interference on the quantification of reducing sugars by the 3,5-dinitrosalicylic acid assay mislead carbohydrase activity measurements. Carbohydr Res 363:33–37
Tonozuka T, Tanaka Y, Okuyama S, Miyazaki T, Nishikawa A, Yoshida M (2017) Structure of the catalytic domain of alpha-L-arabinofuranosidase from Coprinopsis cinerea, CcAbf62A, provides insights into structure-function relationships in glycoside hydrolase family 62. Appl Biochem Biotechnol 181:511–525
Ullah H, Wahid F, Santos HA, Khan T (2016) Advances in biomedical and pharmaceutical applications of functional bacterial cellulose-based nanocomposites. Carbohydr Polym 150:330–352
Uryu T, Sugie M, Ishida S, Konoma S, Kato H, Katsuraya K, Okuyama K, Borjihan G, Iwashita K, Iefuji H (2006) Chemo-enzymatic production of fuel ethanol from cellulosic materials utilizing yeast expressing beta-glucosidases. Appl Biochem Biotechnol 135:15–31
Yousefi Shivyari N, Tajvidi M, Bousfield DW, Gardner DJ (2016) Production and characterization of laminates of paper and cellulose nanofibrils. ACS Appl Mater Interfaces 8:25520–25528
Zhang Z, Wang H, Zhu J, Suneethi S, Zheng J (2012) Swine manure vermicomposting via housefly larvae (Musca domestica): the dynamics of biochemical and microbial features. Bioresour Technol 118:563–571
Zhang M, Liu N, Qian C, Wang Q, Wang Q, Long Y, Huang Y, Zhou Z, Yan X (2014) Phylogenetic and functional analysis of gut microbiota of a fungus-growing higher termite: bacteroidetes from higher termites are a rich source of beta-glucosidase genes. Microb Ecol 68:416–425
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We are very grateful to the anonymous reviewers for their important and strategical comments, which have significantly improved the quality of our paper.
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Supplementary Table 1—The primers of RACE.
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Zhang, S., Huang, J., Hu, R. et al. Characterization of a new multifunctional beta-glucosidase from Musca domestica . Biotechnol Lett 39, 1219–1227 (2017). https://doi.org/10.1007/s10529-017-2351-0
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DOI: https://doi.org/10.1007/s10529-017-2351-0