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Updated: Jun 24, 2026

Analysis of Fucosylated Human Milk Trisaccharides in Biotechnological Context Using Genetically Encoded Biosensors
Published on: April 13, 2019
Characterization and Molecular Modification of a Cold-Adapted β-Galactosidase from Flavobacterium algicola for
Shutong Jing1,2,3, Zhuoning Cao1,2,3, Jianan Sun1,2,3
1State Key Laboratory of Marine Food Processing and Safety Control, College of Food Science and Engineering, Ocean University of China, Qingdao 266404, PR China.
Abstract:
β-Galactosidases are widely used to produce lactose-free dairy products, but efficient lactose hydrolysis under refrigerated conditions remains limited by the low activity of many commercial enzymes. In this study, a cold-adapted β-galactosidase OUC-JST from Flavobacterium algicola was characterized and engineered. OUC-JST exhibited maximal activity at 20 °C and pH 7.0. Structure-guided mutagenesis identified R110I, which shifted the optimal temperature to 15 °C, while K1023D increased activity approximately 3-fold. The combined variant R110I/K1023D (OUC-JST-N) retained the optimal temperature of 15 °C and exhibited 2.80-fold higher specific activity than the wild type. Molecular dynamics simulations suggested that OUC-JST-N may modulate correlated motions and active-site flexibility, providing a possible explanation for its improved performance. In pasteurized whole milk, OUC-JST-N hydrolyzed 98.37% of lactose at 10 °C within 48 h, leaving 812.25 mg/L residual lactose. This study highlights the potential of the cold-adapted β-galactosidase OUC-JST and its variant in the dairy processing industry as a solution to lactose intolerance.
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