Mitamura T, Urabe I, Okada H
Department of Fermentation Technology, Faculty of Engineering, Osaka University, Japan.
Eur J Biochem. 1989 Dec 8;186(1-2):389-93. doi: 10.1111/j.1432-1033.1989.tb15221.x.
Three glucose dehydrogenases (GlcDH) from Bacillus megaterium, GlcDH-I, GlcDH-II and GlcDH-IWG3, were purified from Escherichia coli cells harboring one of the hybrid plasmids, pGDK1, pGDK2 and pGDA3, respectively, pGDK1 and pGDK2 contain two isozyme genes, gdhI and gdhII, respectively, from B. megaterium IAM 1030 and pGDA3 contains an isozyme gene from B. megaterium IWG3; GlcDH-IWG3 is a variant of GlcDH-I. GlcDH-I and GlcDH-II have similar pH/activity profiles and the profile for GlcDH-IWG3 is identical to that of GlcDH-I. The pH/stability profiles of these enzymes show that GlcDH-IWG3 is the most stable enzyme in the acidic region, while GlcDH-II is the most stable in the alkaline region, and GlcDH-I is the most unstable throughout the entire pH range examined. As for thermostability, GlcDH-II is the most resistant against heat inactivation at pH 6.5. The values of the first-order rate constant for heat inactivation at 50 degrees C are 0.27 min-1, 0.05 min-1 and 0.11 min-1 for GlcDH-I, GlcDH-II and GlcDH-IWG3, respectively. Kinetic studies show that these enzymes have similar kinetic constant values except that there are some differences in Kia for NAD(P) and Ka (the limiting Michaelis constant) for NAD; the values of the ratio of Kia for NAD and NADP are 11,340 and 8.7 for GlcDH-I, GlcDH-II and GlcDH-IWG3, respectively. GlcDH-I and GlcDH-IWG3 have very similar substrate specificities and GlcDH-II has a slightly higher specificity for D-glucose and 2-deoxy-D-glucose than the others. The results are discussed on the basis of the amino acid substitutions between the enzymes.
从巨大芽孢杆菌中分离得到三种葡萄糖脱氢酶(GlcDH),即GlcDH-I、GlcDH-II和GlcDH-IWG3,它们分别从携带杂交质粒pGDK1、pGDK2和pGDA3之一的大肠杆菌细胞中纯化得到。pGDK1和pGDK2分别包含来自巨大芽孢杆菌IAM 1030的两个同工酶基因gdhI和gdhII,pGDA3包含来自巨大芽孢杆菌IWG3的一个同工酶基因;GlcDH-IWG3是GlcDH-I的变体。GlcDH-I和GlcDH-II具有相似的pH/活性曲线,GlcDH-IWG3的曲线与GlcDH-I相同。这些酶的pH/稳定性曲线表明,GlcDH-IWG3在酸性区域是最稳定的酶,而GlcDH-II在碱性区域最稳定,GlcDH-I在整个检测的pH范围内最不稳定。至于热稳定性,GlcDH-II在pH 6.5时对热失活最具抗性。在50℃下热失活的一级速率常数分别为:GlcDH-I为0.27 min-1,GlcDH-II为0.05 min-1,GlcDH-IWG3为0.11 min-1。动力学研究表明,这些酶具有相似的动力学常数,只是在NAD(P)的Kia和NAD的Ka(极限米氏常数)方面存在一些差异;GlcDH-I、GlcDH-II和GlcDH-IWG3的NAD与NADP的Kia比值分别为11340和8.7。GlcDH-I和GlcDH-IWG3具有非常相似的底物特异性,GlcDH-II对D-葡萄糖和2-脱氧-D-葡萄糖的特异性略高于其他酶。根据酶之间的氨基酸取代情况对结果进行了讨论。