固定化在塑料支架上的α -淀粉酶:稳定性,pH和温度分布和动力学参数。

M G Roig, A Slade, J F Kennedy
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引用次数: 9

摘要

对α -淀粉酶在新型异氰酸酯、氯化酸和羧酸活化的塑料载体上的共价固定化研究表明,这些载体对固定化酶具有可行性,特别是与1,6-二氨基己烷和戊二醛反应产生侧臂的固定化酶。通过交联酶或延长支架侧臂可以延长固定化α -淀粉酶的操作稳定性(底物浓度没有影响)。失活的固定化α -淀粉酶在高温下展开,然后再折叠,这些载体被发现对增加酶在再折叠过程中的稳定性至关重要。固定化酶的pH曲线一般不会偏离可溶性酶的最佳pH值,尽管一种异氰酸酯塑料载体衍生物可能由于酶与载体表面的游离酸酐基团之间的反应,使α -淀粉酶的pH活性曲线向更高的pH值范围移动了1.5个pH单位。在所有情况下,固定化酶的温度活性谱与可溶性酶相比都转移到较低的温度范围内。与可溶性酶动力学参数相比,固定化α -淀粉酶Michaelis常数升高,最大速率和比活性降低。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Alpha-amylase immobilized on plastic supports: stabilities, pH and temperature profiles and kinetic parameters.

The covalent immobilization of alpha-amylase on new isocyanate, acid chloride and carboxylic acid--activated plastic supports shows the viability of such supports for immobilizing enzymes, especially those reacting with 1,6-diaminohexane and glutaraldehyde for producing side arms. The operational stability of immobilized alpha-amylase could be extended by crosslinking the enzyme or by extending the support's side arm (substrate concentration has no effect). Inactive immobilized alpha-amylase were unfolded and then refolded at elevated temperature, these supports were found to be essential in increasing the stability of the enzyme during refolding. The pH curves for the immobilized enzyme were in general found not to be shifted from the soluble enzyme's pH optimum, although one isocyanate plastic support derivative shifted the pH activity profile of alpha-amylase to a higher range by 1.5 pH units, probably due to reaction between the enzyme and the free anhydride groups existing on the support's surface. In all cases, the immobilized enzyme's temperature activity profiles were shifted to a lower temperature range when compared to the soluble enzyme. The immobilized alpha-amylase Michaelis constants increased and the the maximum rates and specific activities decreased when compared to the soluble enzyme kinetic parameters.

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