Department of Microbiology, M 330 Biological Sciences Building, University of Alberta, Edmonton, Alberta, Canada T6G 2E9.
Appl Environ Microbiol. 1990 Nov;56(11):3473-7. doi: 10.1128/aem.56.11.3473-3477.1990.
Chloroperoxidase (CPO) purified from Caldariomyces fumago CMI 89362 was covalently bound to aminopropyl-glass by using a modification of an established method. Acid-washed glass was derivatized by using aminopropyltriethoxysilane, and the enzyme was ionically bound at low ionic strength. Further treatment with glutaraldehyde covalently linked the enzyme to the glass beads in an active form. No elution of bound activity from glass beads could be detected with a variety of washings. The loading of enzyme protein to the glass beads was highest, 100 mg of CPO per g of glass, at high reaction ratios of CPO to glass, but the specific activity of the immobilized enzyme was highest, 36% of theoretical, at low enzyme-to-carrier ratios. No differences in the properties of the soluble and immobilized enzymes could be detected by a number of criteria: their pH-activity and pH-stability profiles were similar, as were their thermal stabilities. After five uses, the immobilized enzyme retained full activity between pH 6.0 and 6.7.
从 Caldariomyces fumago CMI 89362 中纯化的氯化过氧化物酶 (CPO) 采用改良的已有方法共价结合到氨丙基玻璃上。酸处理的玻璃通过氨丙基三乙氧基硅烷进行衍生化,并且在低离子强度下通过离子键合固定化酶。进一步用戊二醛处理,以活性形式将酶共价连接到玻璃珠上。用各种洗涤液都无法从玻璃珠上洗脱结合的活性。在高反应比(CPO 与玻璃)下,酶蛋白的负载量最高,每克玻璃可达 100mg 的 CPO,但固定化酶的比活最高,为理论值的 36%,在低酶载体比下。通过多种标准都无法检测到可溶性和固定化酶的性质有差异:它们的 pH 活性和 pH 稳定性曲线相似,热稳定性也相似。在五次使用后,固定化酶在 pH6.0 到 6.7 之间仍保持全部活性。