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首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Simultaneously improving stability and specificity of cell surface displayed glucose dehydrogenase mutants to construct whole-cell biocatalyst for glucose biosensor application
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Simultaneously improving stability and specificity of cell surface displayed glucose dehydrogenase mutants to construct whole-cell biocatalyst for glucose biosensor application

机译:同时提高细胞表面展示的葡萄糖脱氢酶突变体的稳定性和特异性,以构建用于葡萄糖生物传感器应用的全细胞生物催化剂

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摘要

The improved stability and substrate specificity of cell surface displayed glucose dehydrogenase (GDH) mutants by replacing four amino acids from Bacillus subtilis by using site-directed mutagenesis was systematically investigated. A series of mutated GDHs including E170R/Q252L, V149K/E170R/Q252L, E170R/Q252L/G259A and V149K/E170R/Q252L/G259A, were fused to the ice nucleation protein for displaying on cell surface of Eschericia coli. Q252L/E170R/V149K, Q252L/E170R/G259A and Q252L/E170R/V149K/G259A variants were found stable at a wide pH range and shown excellent thermostability. Especially, the Q252L/E170R/V149K/G259A mutant showed half-life of ~3.8. days at 70. °C. Q252L/E170R/V149K/G259A variant exhibited the narrowest substrate specificity for d-glucose. The whole cell displayed GDH mutant could be cultured in a large scale with excellent enzyme activity and productivity. In addition, a sensitive and stable electrochemical glucose biosensor can be prepared using the GDH-mutant bacteria modified electrode. Thus, the whole cell biocatalysts are promising candidates for exploitation in a wide range of industrial applications.
机译:系统地研究了通过定点诱变替代枯草芽孢杆菌的四个氨基酸,提高了细胞表面展示的葡萄糖脱氢酶(GDH)突变体的稳定性和底物特异性。将包括E170R / Q252L,V149K / E170R / Q252L,E170R / Q252L / G259A和V149K / E170R / Q252L / G259A的一系列突变的GDH融合到冰核蛋白上,以展示在大肠杆菌的细胞表面。发现Q252L / E170R / V149K,Q252L / E170R / G259A和Q252L / E170R / V149K / G259A变体在很宽的pH范围内稳定,并显示出出色的热稳定性。尤其是,Q252L / E170R / V149K / G259A突变体的半衰期约为3.8。在70°C下运行几天。 Q252L / E170R / V149K / G259A变体显示出最窄的d-葡萄糖底物特异性。全细胞展示的GDH突变体可以大规模培养,具有优异的酶活性和生产率。另外,可以使用GDH突变细菌修饰的电极制备灵敏且稳定的电化学葡萄糖生物传感器。因此,全细胞生物催化剂是在广泛的工业应用中开发的有希望的候选者。

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