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Comparison of Catalytic Properties of Free and Immobilized Cellobiase Novozym 188

机译:自由和固定的纤维纤维二沸虫催化性能的比较188

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The enzyme cellobiase from Novo was immobilized in controlled pore silica particles by covalent binding with the silane-glutaraldehyde method with protein and activity yields of 67 and 13.7%, respectively. The activity of the free enzyme (FE) and immobilized enzyme (IE) was determined with 2 g/L of cellobiose, from 40 to 75°C at pH 3.0-7.0 for FE and from 40 to 70°C at pH 2.2-7.0 for IE. At pH 4.8 the maximum specific activity for the FE and IE occurred at 65°C: 17.8 and 2.2 micromol of glucose/(min*mg of protein), respectively. For all temperatures the optimum pH observed for FE was 4.5 whereas for IE it was shifted to 3.5. The energy of activation was 11 kcal/mol for FE and 5 kcal/mol for IE at pH 4.5-5, showing apparent diffusional limitation for the latter. Thermal stability of the FE and IE was determined with 2 g/L of cellobiose (pH 4.8) at temperatures from 40 to 70°C for FE and 40 to 75°C for IE. Free cellobiase maintained its activity practically constant for 240 min at temperatures up to 55°C. The IE has shown higher stability, retaining its activity in the same test up to 60°C. Half-life experimental results for FE were 14.1,2.1, and 0.17 h at 60, 65, and 70°C, respectively, whereas IE at the same temperatures had half-lives of 245, 21.3, and 2.9 h. The energy of thermal deactivation was 80.6 kcal/mol for the free enzyme and 85.2 kcal/mol for the IE, suggesting stabilization by immobilization.
机译:通过与硅烷 - 戊二醛方法的共价结合分别以67%和13.7%的蛋白质和活性产率的共价结合,将来自Novo的酶纤维蛋白酶固定在受控的孔隙二氧化硅颗粒中。用2g / l的纤维二糖法测定游离酶(Fe)和固定化酶(IE)的活性,在pH3.0-7.0下,在pH 2.2-7.0下以40-7.0至75℃。因为IE。在pH 4.8下,分别在65℃:17.8和2.2微酚葡萄糖/(MIN * Mg蛋白)中发生Fe和Ie的最大特异性活性。对于所有温度,对于Fe观察到的最佳pH为4.5,而IE被移位为3.5。 Fe和5kcal / mol的活化能量为11kcal / mol,用于IE在pH 4.5-5,显示后者的表观漫射限制。 Fe和IE的热稳定性和Ie的热稳定性在40至70℃的温度下用2g / L的纤维二糖(pH4.8)测定Fe和40至75℃,用于IE。自由纤维纤维同时将其活度保持在高达55°C的温度下240分钟。 IE已经显示出更高的稳定性,保持其在相同的测试中的活性至60℃。 Fe的半衰期实验结果分别为14.1,2.1和0.17小时,分别为60,65和70℃,而IE在相同温度下的半衰期为245,21.3和2.9小时。用于游离酶的热失活的能量为80.6kcal / mol,对于IE的85.2kcal / mol,表明通过固定化稳定。

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