Bedino S, Testore G, Obert F
Ital J Biochem. 1985 Sep-Oct;34(5):341-55.
Intracellular beta-glucosidase was extracted from the mycelium of Th. aurantiacus, concentrated by DEAE-cellulose treatment, separated from alpha-glucosidase by hydroxylapatite chromatography and purified to electrophoretic homogeneity. Optimally active at 75 degrees C and pH 4.2, beta-glucosidase displayed complex kinetics with p-nitrophenyl-beta-glucoside which inhibited the enzyme at concentrations greater than 0.5 mM. With cellobiose the kinetics were practically hyperbolic at 70 degrees C (Hill coefficient nH = 1.09 and Km = 0.83 mM), but faint inhibition was observed at 50 degrees C. beta-glucosidase shares with alpha-glucosidase a high number of physicochemical properties: with similar aminoacid composition, very close isoelectric point (4.5 and 4.2), high molecular weight in the native state (175,000 and 140,000), the two enzymes showed the same behaviour on DEAE-cellulose, were equally stable at high temperature and were dissociated by 6 M urea to still active proteins. Furthermore, the carbohydrate contents of beta-glucosidase (17.6%) is not far from that previously determined for some forms of alpha-glucosidase (14-16%).
从橙色嗜热放线菌的菌丝体中提取细胞内β-葡萄糖苷酶,通过DEAE-纤维素处理进行浓缩,经羟基磷灰石色谱法与α-葡萄糖苷酶分离,并纯化至电泳纯。β-葡萄糖苷酶在75℃和pH 4.2时活性最佳,对对硝基苯基-β-葡萄糖苷表现出复杂的动力学,当浓度大于0.5 mM时该物质会抑制该酶。对于纤维二糖,在70℃时动力学实际上呈双曲线(希尔系数nH = 1.09,Km = 0.83 mM),但在50℃时观察到微弱抑制。β-葡萄糖苷酶与α-葡萄糖苷酶具有许多共同的物理化学性质:氨基酸组成相似,等电点非常接近(4.5和4.2),天然状态下分子量高(175,000和140,000),这两种酶在DEAE-纤维素上表现出相同行为,在高温下同样稳定,并且被6 M尿素解离为仍具活性的蛋白质。此外,β-葡萄糖苷酶的碳水化合物含量(17.6%)与先前测定的某些形式的α-葡萄糖苷酶的含量(14 - 16%)相差不大。