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肺炎克雷伯菌285中两种β-半乳糖苷酶在大肠杆菌中的表达、特性及其在乳果糖和1-乳果糖酶促合成中的应用

Expression and characterization of two β-galactosidases from Klebsiella pneumoniae 285 in Escherichia coli and their application in the enzymatic synthesis of lactulose and 1-lactulose.

作者信息

Wang He, Yang Ruijin, Jiang Xiaoyan, Hua Xiao, Zhao Wei, Zhang Wenbin, Chen Xuan

出版信息

Z Naturforsch C J Biosci. 2014 Nov-Dec;69(11-12):479-87. doi: 10.5560/znc.2014-0061.

Abstract

The two genes lacZ1 and lacZ2 from Klebsiella pneumoniae 285, encoding β-galactosidase isoenzymes II and III (KpBGase-II and -III), were each cloned downstream of a T7 promoter for expression in Escherichia coli BL21(DE3), and the resulting recombinant enzymes were characterized in detail. The optimum temperature and pH value of KpBGase-II were 40 °C and 7.5, and those of KpBGase-III were 50 °C and 8.0, respectively. KpBGase-III was more stable than KpBGase-II at higher temperature (>60°C). Both β-galactosidases were more active towards o-nitrophenyl-β- D-galactopyranoside as compared to lactose. The enzymatic synthesis of lactulose and 1-lactulose catalyzed by KpBGase-II and KpBGase-III was investigated. Using 400 g/L lactose and 200 g/L fructose as substrates, the resulting lactulose and 1-lactulose yields with KpBGase-II were 6.2 and 42.3 g/L, while those with KpBGase-III were 5.1 and 23.8 g/L, respectively. KpBGase-II has a potential for the production of 1-lactulose from lactose and fructose. Like other β-galactosidases, the two isozymes catalyze the transgalactosylation in the presence of fructose establishing the β-(1→1) linkage.

摘要

来自肺炎克雷伯菌285的两个基因lacZ1和lacZ2,分别编码β-半乳糖苷酶同工酶II和III(KpBGase-II和-III),它们各自被克隆到T7启动子下游,以便在大肠杆菌BL21(DE3)中表达,并且对产生的重组酶进行了详细表征。KpBGase-II的最适温度和pH值分别为40℃和7.5,KpBGase-III的最适温度和pH值分别为50℃和8.0。在较高温度(>60℃)下,KpBGase-III比KpBGase-II更稳定。与乳糖相比,这两种β-半乳糖苷酶对邻硝基苯基-β-D-吡喃半乳糖苷的活性更高。研究了KpBGase-II和KpBGase-III催化的乳果糖和1-乳果糖的酶促合成。以400 g/L乳糖和200 g/L果糖为底物,KpBGase-II产生的乳果糖和1-乳果糖产量分别为6.2 g/L和42.3 g/L,而KpBGase-III产生的产量分别为5.1 g/L和23.8 g/L。KpBGase-II具有从乳糖和果糖生产1-乳果糖的潜力。与其他β-半乳糖苷酶一样,这两种同工酶在果糖存在下催化转半乳糖基化反应,形成β-(1→1)键。

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