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Kinetic studies on exploring lactose hydrolysis potential of β galactosidase extracted from Lactobacillus plantarum HF571129

机译:探索植物乳杆菌HF571129提取的β-半乳糖苷酶的乳糖水解潜力的动力学研究

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摘要

A novel intracellular β-galactosidases produced by Lactobacillus plantarum , isolated from an Indian traditional fermented milk product curd was purified and characterized. The β-galactosidases is a hetrodimer with a molecular weight of 60 kDa (larger subunit) and 42 kDa (smaller subunit), as estimated by sodium dodecyl sulphate-polyacrylamide gel electrophoresis (SDS-PAGE). The enzyme was purified 7.23 fold by ultrasonication, ultrafiltration and gel filtration chromatography with an overall recovery of 30.41 %. The optimum temperature for hydrolysis of its preferred substrates, o-nitrophenyl- β-D-galactopyranoside (ONPG) and lactose, are 50 °C (both), and optimum pH for these reactions is 6.5 and 7.5, respectively. The β-galactosidases showed higher affinity for ONPG (Km, 6.644 mM) as compared to lactose (Km, 23.28 mM). Galactose, the end product of lactose hydrolysis was found to be inhibited (47 %). The enzyme activity was drastically altered by the metal ion chelators EDTA, representing that this enzyme is a metalloenzyme. The enzyme was activated to a larger extent by Mg2+ (73 % at 1 mM), while inhibited at higher concentrations of Na+ (54 % at 100 mM), K+ (16 % at 100 mM) and urea (16 % at 100 mM). The thermal stability study indicated an inactivation energy of Ed = 171.37 kJ mol−1. Thermodynamic parameters such as ∆H, ∆S and ∆G, were determined as a function of temperature. About 88 % of lactose was hydrolyzed at room temperature within 1 h. The study suggested that this enzyme showed its obvious superiority in the industrial lactose conversion process.
机译:从印度传统发酵乳制品凝乳分离出的植物乳杆菌产生的新型胞内β-半乳糖苷酶被纯化并鉴定。 β-半乳糖苷酶是一种异二聚体,分子量为60 kDa(较大的亚基)和42 kDa(较小的亚基),通过十二烷基硫酸钠-聚丙烯酰胺凝胶电泳(SDS-PAGE)估计。通过超声,超滤和凝胶过滤色谱法将酶纯化7.23倍,总回收率为30.41%。其首选底物邻硝基苯基-β-D-吡喃半乳糖苷(ONPG)和乳糖的最佳水解温度均为50°C(两者),这些反应的最佳pH分别为6.5和7.5。与乳糖(Km,23.28mM)相比,β-半乳糖苷酶对ONPG(Km,6.644mM)具有更高的亲和力。发现乳糖水解的最终产物半乳糖受到抑制(47%)。金属离子螯合剂EDTA大大改变了酶的活性,这表明该酶是金属酶。该酶被Mg 2 + (1mM时为73%)更大程度地激活,而在更高浓度的Na + (100mM时为54%)时被抑制, K + (在100mM时为16%)和尿素(在100mM时为16%)。热稳定性研究表明其失活能为Ed = 171.37 kJ mol -1 。确定了诸如∆H,∆S和∆G之类的热力学参数作为温度的函数。室温下1小时内约有88%的乳糖水解。研究表明,该酶在工业乳糖转化过程中显示出明显的优越性。

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