1990Korean Journal of Food Science and TechnologyRequires access

Studies on the Immobilization of ${\beta}-Galactosidase$ from Bacillus subtilis

Gi Jang, Chang-Ryoul Kim, Yong-Kyu Lee

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Abstract

The conditions for immobilization of the partially purified form Bacillus subtilis HP4 and the properties of the immobilized enzyme have been investigated. The crude enzyme precipitated with cold acetone was purified about 68-fold through DEAE-cellulose and sephadex G-100 chromatography and its recovery was 19.9% The optimal conditions for Immobilization of enzyme were obtained in 2%(w/v) sodium alginate, 15%(v/v) enzyme solution and 2%(w/v) calcium chloride, and also the optimal stirring thme was 2 hours on the above conditions. The optimum temperature and pH values for immobilized enzyme were and 6.5, respectively. Its residual activity was show 25% after heat treatment for an hour at , and found its high stability in pH 6.0 to 8.0. The enzyme activity was not affected b)· EDTA, 2-mercaptoethanol, KCN, protective agents, and other methal ions except Hg ion and Cu ion. The values of the immobilized enzyme on ONPG were , whereas those on lactose were , respectively. The remained enzyme activity for the immobilized enzyme was 95%t of original activity after storage of 40 days at , and when reused for 5 times was 81%. When skim milk(4.8% lactose) and 5% lactose solution were reacted with the immobilized enzyme(250 units/g) of lactose were 51% and 43%, respectively.

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What this paper is about

The conditions for immobilization of the partially purified form Bacillus subtilis HP4 and the properties of the immobilized enzyme have been investigated. The crude enzyme precipitated with cold acetone was purified about 68-fold through DEAE-cellulose and sephadex G-100 chromatography and its recovery was 19.9% The optimal conditions for Immobilization of enzyme were obtained in 2%(w/v) sodium alginate, 15%(v/v) enzyme solution and 2%(w/v) calcium chloride, and also the optimal stirring thme was 2 hours on the above conditions. The optimum temperature and pH values for immobilized enzyme were and 6.5, respectively. Its residual activity was show 25% after heat treatment for an hour at , and found its high stability in pH 6.0 to 8.0. The enzyme activity was not affected b)· EDTA, 2-mercaptoethanol, KCN, protective agents, and other methal ions except Hg ion and Cu ion. The values of the immobilized enzyme on ONPG were , whereas those on lactose were , respectively. The remained enzyme activity for the immobilized enzyme was 95%t of original activity after storage of 40 days at , and when reused for 5 times was 81%. When skim milk(4.8% lactose) and 5% lactose solution were reacted with the immobilized enzyme(250 units/g) of lactose were 51% and 43%, respectively.

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Available abstract

The conditions for immobilization of the partially purified form Bacillus subtilis HP4 and the properties of the immobilized enzyme have been investigated. The crude enzyme precipitated with cold acetone was purified about 68-fold through DEAE-cellulose and sephadex G-100 chromatography and its recovery was 19.9% The optimal conditions for Immobilization of enzyme were obtained in 2%(w/v) sodium alginate, 15%(v/v) enzyme solution and 2%(w/v) calcium chloride, and also the optimal stirring thme was 2 hours on the above conditions. The optimum temperature and pH values for immobilized enzyme were and 6.5, respectively. Its residual activity was show 25% after heat treatment for an hour at , and found its high stability in pH 6.0 to 8.0. The enzyme activity was not affected b)· EDTA, 2-mercaptoethanol, KCN, protective agents, and other methal ions except Hg ion and Cu ion. The values of the immobilized enzyme on ONPG were , whereas those on lactose were , respectively. The remained enzyme activity for the immobilized enzyme was 95%t of original activity after storage of 40 days at , and when reused for 5 times was 81%. When skim milk(4.8% lactose) and 5% lactose solution were reacted with the immobilized enzyme(250 units/g) of lactose were 51% and 43%, respectively.

Key concepts: Chemistry, Lactose, Chromatography, Enzyme, Immobilized enzyme, Bacillus subtilis, Enzyme assay, Acetone

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