Banerjee Goutam, Ray Atish, Hasan Kazi Nurul
Department of Zoology, Visva-Bharati University, Santiniketan 731 235, India,
J Biosci. 2018 Dec;43(5):941-945.
β-Galactosidase is a metal-activated enzyme, which breaks down the glucosidic bond of lactose and produces glucose and galactose. Among several commercial applications, preparation of lactose-free milk has gained special attention. The present objective is to demonstrate the activity kinetics of β-galactosidase purified from a non-pathogenic bacterium SB. The enzyme was purified by DEAE-cellulose and Sephadex G-100 column chromatography. The purity of the protein was checked by high-performance liquid chromatography (HPLC). The purified enzyme of molecular weight ~95 kDa exhibited specific activity of 137.7 U mg-1 protein with a purification of 11.22-fold and yield 12.42%. The exact molecular weight (95.7 kDa) of the purified protein was determined by MALDI-TOF. Previously, most of the studies have used Mg+2 as a cofactor of β-galactosidase. In this present investigation, we have checked the kinetic behavior of the purified β-galactosidase in presence of several bivalent metals. Lowest Km with highest substrate (orthonitrophenyl- β-galactoside or ONPG) affinity was measured in presence of Ca2+ (42.45 μM ONPG). However, our results demonstrated that Vmax was maximum in presence of Mn+2 (55.98 μM ONP produced mg-1 protein min-1), followed by Fe=2, Zn+2, Mg+2, Cu+2 and Ca+2. A large number of investigations reported Mg+2 as potential co factor for bgalacosidase. However, β-galactosidase obtained from Arthrobacter oxydans SB has better activity in the presence of Mn+2 or Fe2+.
β-半乳糖苷酶是一种金属激活酶,它能分解乳糖的糖苷键,产生葡萄糖和半乳糖。在众多商业应用中,制备无乳糖牛奶受到了特别关注。目前的目标是证明从非致病细菌SB中纯化得到的β-半乳糖苷酶的活性动力学。该酶通过DEAE-纤维素和葡聚糖G-100柱色谱法进行纯化。蛋白质的纯度通过高效液相色谱(HPLC)进行检测。纯化后的分子量约为95 kDa的酶表现出137.7 U mg-1蛋白质的比活性,纯化倍数为11.22倍,产率为12.42%。通过基质辅助激光解吸电离飞行时间质谱(MALDI-TOF)确定了纯化蛋白质的确切分子量(95.7 kDa)。以前,大多数研究都使用Mg+2作为β-半乳糖苷酶的辅因子。在本研究中,我们检测了纯化的β-半乳糖苷酶在几种二价金属存在下的动力学行为。在Ca2+存在下(42.45 μM邻硝基苯-β-半乳糖苷或ONPG)测得最低的Km值和最高的底物亲和力。然而,我们的结果表明,在Mn+2存在下Vmax最大(每分钟每毫克蛋白质产生55.98 μM邻硝基苯酚),其次是Fe2+、Zn+2、Mg+2、Cu+2和Ca+2。大量研究报道Mg+2是β-半乳糖苷酶的潜在辅因子。然而,从氧化节杆菌SB中获得的β-半乳糖苷酶在Mn+2或Fe2+存在下具有更好的活性。