Identification and characterization of thermostable glucose dehydrogenases from thermophilic filamentous fungi

被引:0
作者
Kazumichi Ozawa
Hisanori Iwasa
Noriko Sasaki
Nao Kinoshita
Atsunori Hiratsuka
Kenji Yokoyama
机构
[1] Nanomaterials Research Institute,School of Bioscience and Biotechnology
[2] National Institute of Advanced Industrial Science and Technology,undefined
[3] Tokyo University of Technology,undefined
来源
Applied Microbiology and Biotechnology | 2017年 / 101卷
关键词
FAD-dependent glucose dehydrogenase; Gene cloning; Recombinant protein production; Thermostability;
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学科分类号
摘要
FAD-dependent glucose dehydrogenase (FAD-GDH), which contains FAD as a cofactor, catalyzes the oxidation of d-glucose to d-glucono-1,5-lactone, and plays an important role in biosensors measuring blood glucose levels. In order to obtain a novel FAD-GDH gene homolog, we performed degenerate PCR screening of genomic DNAs from 17 species of thermophilic filamentous fungi. Two FAD-GDH gene homologs were identified and cloned from Talaromyces emersonii NBRC 31232 and Thermoascus crustaceus NBRC 9129. We then prepared the recombinant enzymes produced by Escherichia coli and Pichia pastoris. Absorption spectra and enzymatic assays revealed that the resulting enzymes contained oxidized FAD as a cofactor and exhibited glucose dehydrogenase activity. The transition midpoint temperatures (Tm) were 66.4 and 62.5 °C for glycosylated FAD-GDHs of T. emersonii and T. crustaceus prepared by using P. pastoris as a host, respectively. Therefore, both FAD-GDHs exhibited high thermostability. In conclusion, we propose that these thermostable FAD-GDHs could be ideal enzymes for use as thermotolerant glucose sensors with high accuracy.
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页码:173 / 183
页数:10
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共 208 条
[1]  
Abramoff MD(2004)Image processing with ImageJ Biophotonics Int 11 36-42
[2]  
Magalhaes PJ(2016)Standards of medical care in diabetes—2016 Diabetes Care 39 S1-S112
[3]  
Ram SJ(2004)Hospital admission guidelines for diabetes Diabetes Care 27 S103-293
[4]  
Bak TG(1967)Studies on glucose dehydrogenase of Biochim Biophys Acta 139 277-327
[5]  
Bak TG(1967): II. purification and physical and chemical properties Biochim Biophys Acta 146 317-927
[6]  
Berka RM(2011)Studies on glucose dehydrogenase of Nat Biotechnol 29 922-4857
[7]  
Grigoriev IV(1978): III. General enzymatic properties Proc Natl Acad Sci U S A 75 4853-200
[8]  
Otillar R(1999)Comparative genomic analysis of the thermophilic biomass-degrading fungi Biotechnol Appl Biochem 30 193-513
[9]  
Salamov A(1978) and Nature 275 510-1235
[10]  
Grimwood J(2006)Ovalbumin gene: evidence for a leader sequence in mRNA and DNA sequences at the exon-intron boundaries Enzyme Microb Technol 39 1230-138