Chiu C P, Kosikowski F V
J Dairy Sci. 1986 Apr;69(4):959-64. doi: 10.3168/jds.S0022-0302(86)80488-X.
The maximum conversion of glucose to fructose in lactase-hydrolyzed whey permeate by glucose isomerase was approximately 52% at .1 g enzyme/ml substrate after 7 h incubation at 60 degrees C. Removal of minerals from the substrate was essential for enzyme activity. The dependence of the enzyme on Mg++ and Co++ for activity in the presence of high ash concentration was demonstrated. Optimum Mg++ and Co++ additions were 250 and 100 ppm, respectively. The isomerization reaction was enhanced more when both 100 ppm Mg++ and 50 ppm Co++ were added. Hydrolyzed isomerized lactose whey syrup with sweetness equivalent to sucrose was successfully produced through enzymatic isomerization of glucose in lactase-hydrolyzed whey permeate after supplementation with pure glucose. Fructose in hydrolyzed isomerized lactose whey syrup was effectively separated from other sugars by Dowex 1X8-200 anion exchange resin in the bisulfite form.
在60℃下孵育7小时后,乳糖酶水解乳清渗透物中葡萄糖异构酶将葡萄糖转化为果糖的最大转化率在酶浓度为0.1克/毫升底物时约为52%。从底物中去除矿物质对酶活性至关重要。研究表明,在高灰分浓度存在的情况下,该酶的活性依赖于Mg++和Co++。最佳的Mg++和Co++添加量分别为250 ppm和100 ppm。当同时添加100 ppm Mg++和50 ppm Co++时,异构化反应的增强更为明显。在添加纯葡萄糖后,通过乳糖酶水解乳清渗透物中葡萄糖的酶促异构化成功制备了甜度与蔗糖相当的水解异构化乳糖乳清糖浆。水解异构化乳糖乳清糖浆中的果糖通过亚硫酸氢盐形式的Dowex 1X8 - 200阴离子交换树脂与其他糖类有效分离。