Kim S H, Lim K P, Kim H S
Culture Systems, Inc., Mishawaka, IN 46545, USA.
J Dairy Sci. 1997 Oct;80(10):2264-9. doi: 10.3168/jds.S0022-0302(97)76175-7.
The hydrolysis of o-nitrophenyl galactopyranoside and lactose by beta-D-galactosidase from Kluyveromyces lactis was enhanced by the addition of Mg2+ and Mn2+, but the rates of activation by each metal on both substrates were not the same. The Co2+, Zn2+, and Ni2+ activated the o-nitrophenyl galactopyranoside-hydrolyzing activity of the enzyme, but these same metals inhibited the lactose-hydrolyzing activity. The addition of Mg2+ and EDTA to the assay buffer increased the hydrolysis of o-nitrophenyl galactopyranoside and lactose at different rates. The responses of o-nitrophenyl galactopyranoside and lactose to the enzyme activity were different as a function of pH. The hydrolyzing activity toward both substrates also was influenced by the concentration of the phosphate in the assay buffer. However, the profile of the enzyme activity toward each substrate was different as a function of concentration. Because the assay of beta-galactosidase using o-nitrophenyl galactopyranoside is fast and convenient, the estimation of lactose-hydrolyzing activity of the enzyme has frequently been made based on the assay of o-nitrophenyl galactopyranoside hydrolysis. As shown in this study, a slight change in the conditions of the assay system and the enzyme application may cause changes in the ability of the enzyme to hydrolyze both lactose and o-nitrophenyl galactopyranoside. The change in o-nitrophenyl galactopyranoside-hydrolyzing activity is not always consistent with that of the lactose-hydrolyzing activity under the given condition, which may cause an inaccurate estimation of the enzyme activity in the enzyme preparation as well as in actual applications of the enzyme.
乳酸克鲁维酵母β-D-半乳糖苷酶对邻硝基苯基吡喃半乳糖苷和乳糖的水解作用,会因添加Mg2+和Mn2+而增强,但每种金属对两种底物的激活速率并不相同。Co2+、Zn2+和Ni2+激活了该酶水解邻硝基苯基吡喃半乳糖苷的活性,但这些金属却抑制了其水解乳糖的活性。向测定缓冲液中添加Mg2+和EDTA,会以不同速率增加邻硝基苯基吡喃半乳糖苷和乳糖的水解。邻硝基苯基吡喃半乳糖苷和乳糖对酶活性的响应,会因pH值而有所不同。对两种底物的水解活性也受测定缓冲液中磷酸盐浓度的影响。然而,酶对每种底物的活性曲线,会因浓度不同而有所差异。由于使用邻硝基苯基吡喃半乳糖苷测定β-半乳糖苷酶快速便捷,因此常常基于邻硝基苯基吡喃半乳糖苷水解的测定来估算该酶水解乳糖的活性。如本研究所示,测定系统条件和酶应用的微小变化,可能会导致酶水解乳糖和邻硝基苯基吡喃半乳糖苷的能力发生变化。在给定条件下,邻硝基苯基吡喃半乳糖苷水解活性的变化并不总是与乳糖水解活性的变化一致,这可能会导致对酶制剂中酶活性以及酶实际应用中酶活性的估算不准确。