Cloning, expression, and bioinformatics analysis and characterization of a β-galactosidase from Bacillus coagulans T242
Yunpeng Xu, Qiong Wu, Li Bai, Guangqing Mu, Yanfeng Tuo, Shujuan Jiang, Xuemei Zhu, Fang Qian
Abstract
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Yunpeng Xu, Qiong Wu, Li Bai, Guangqing Mu, Yanfeng Tuo, Shujuan Jiang, Xuemei Zhu, Fang Qian
Abstract
Open-access reader
The activities of β-galactosidases from bacteria and molds are affected by temperature, pH, and other factors in the processing of dairy products, limiting their application, so it is necessary to find alternative lactases. In this study, the β-galactosidase gene from Bacillus coagulans T242 was cloned, co-expressed with a molecular chaperone in Escherichia coli BL21, and subjected to bioinformatic and kinetic analyses and lactase characterization. The results show that the enzyme is a novel thermostable neutral lactase with optimum hydrolytic activity at pH 6.8 and 50°C. The thermal stability and increased lactose hydrolysis activity of β-galactosidase in the presence of Ca 2+ indicated its potential application in the dairy industry.
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The activities of β-galactosidases from bacteria and molds are affected by temperature, pH, and other factors in the processing of dairy products, limiting their application, so it is necessary to find alternative lactases. In this study, the β-galactosidase gene from Bacillus coagulans T242 was cloned, co-expressed with a molecular chaperone in Escherichia coli BL21, and subjected to bioinformatic and kinetic analyses and lactase characterization. The results show that the enzyme is a novel thermostable neutral lactase with optimum hydrolytic activity at pH 6.8 and 50°C. The thermal stability and increased lactose hydrolysis activity of β-galactosidase in the presence of Ca 2+ indicated its potential application in the dairy industry.
Key concepts: Bacillus coagulans, Cloning (programming), Biology, Computational biology, Genetics, Bacteria, Computer science, Programming language