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Partial purification and biochemical characterization of acid phosphatase from germinated mung bean (Vigna radiata) seeds

机译:发芽的绿豆种子中酸性磷酸酶的部分纯化和生化特性

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Mung bean (Vigna radiata) is one of the important crops of the North Eastern Region of India. In the present study, acid phosphatase enzyme was isolated and partially purified from germinated local mung bean seeds. The sequential partial purification process was performed using ammonium sulphate precipitation method. The crude enzyme having a specific activity of 0.50 U/mg was purified using 30 to 70% ammonium sulphate precipitation method. The acid phosphatase was purified by 2.6 fold with a yield of 58.9% and specific activity of 1.3 U/mg. One prominent band was obtained on?sodium dodecyl sulphate-polyacrylamide gel electrophresis (SDS-PAGE)which confirmed the purity of the enzyme. Molecular weight of the enzyme was estimated as 34.5 kDa. The enzyme activity was measured at different incubation time, pH, temperature and substrate concentration. The activity increased slowly from 10 to 70 min of incubation. The maximum activity was obtained at 70 min, thereafter the activity decreased gradually. The enzyme was found to be active over a wide range of temperature (30 to 80°C) and maximum activity was observed at 70°C. The optimal pH value of the enzyme activity was found to be 5.2. There was a corresponding increase in the rate of reaction with the increase in the substrate concentration from 0.1 to 0.8 mM and a linear relationship was obtained at 2 to 8?mM. Both Km? and? Vmax?value were calculated as 0.416 mM and 1.33 μmoles/min, respectively.
机译:绿豆(Vigna radiata)是印度东北地区的重要农作物之一。在本研究中,从发芽的本地绿豆种子中分离并部分纯化了酸性磷酸酶。顺序部分纯化过程使用硫酸铵沉淀法进行。使用30%至70%的硫酸铵沉淀法纯化具有0.50 U / mg比活的粗酶。将酸性磷酸酶纯化2.6倍,产率为58.9%,比活性为1.3 U / mg。在十二烷基硫酸钠-聚丙烯酰胺凝胶电泳(SDS-PAGE)上获得一个突出的带,证实了该酶的纯度。该酶的分子量估计为34.5 kDa。在不同的孵育时间,pH,温度和底物浓度下测量酶活性。从孵育的10分钟到70分钟,活性缓慢增加。在70分钟时获得最大活性,此后活性逐渐降低。发现该酶在很宽的温度范围内(30至80℃)有活性,在70℃观察到最大的活性。发现该酶活性的最佳pH值为5.2。随着底物浓度从0.1mM增加到0.8mM,反应速率相应增加,并且在2μm到8μmM之间获得线性关系。两公里?和? Vmax值分别计算为0.416mM和1.33μmoles/ min。

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