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葡萄糖氧化酶在选定黏土种类上的吸附、解吸及活性

Adsorption, desorption, and activity of glucose oxidase on selected clay species.

作者信息

Morgan H W, Corke C T

出版信息

Can J Microbiol. 1976 May;22(5):684-93. doi: 10.1139/m76-101.

Abstract

The adsorption of the enzyme glucose oxidase (EC 1.1.3.4) to clays followed the pattern described for other proteins as being pH dependent. Maximum adsorption occurred at or below the isoelectric point of the enzyme. The amount of enzyme adsorbed to clay was influenced by the type of clay used, and also the saturating cations. Initially adsorbed enzyme showed low specific activities, and as amounts of enzyme adsorbed approached maximum stauration of clay, specific activities increased approaching that determined for free enzyme. The adsorption of glucose oxidase involved a temperature-independent cation-exchange mechanism, and enzyme adsorbed to surfaces of clay could be desorbed in active form by elevation of pH of suspending solution. This was followed by a slower temperature-dependent fixation, probably by hydrogen bonding, which resulted in protein being irreversibly adsorbed to clay surfaces. It is proposed that on adsorption of glucose oxidase to clay surfaces unravelling of the protein structure occurred, which allowed penetration of protein into the interlamellar spaces of montmorillonite. This proposal was based on the observed expansion of montmorillonite to 23 A, and the decreases in amount of a second-protein lysozyme adsorbed with extended incubation times of glucose oxidase - clay complexes at pH 4.5.

摘要

葡萄糖氧化酶(EC 1.1.3.4)在黏土上的吸附情况与其他蛋白质类似,呈现出pH依赖性。最大吸附量出现在酶的等电点或其以下。吸附到黏土上的酶量受所用黏土类型以及饱和阳离子的影响。最初吸附的酶表现出较低的比活性,随着吸附到黏土上的酶量接近最大饱和度,比活性增加,接近游离酶的比活性。葡萄糖氧化酶的吸附涉及一种与温度无关的阳离子交换机制,吸附到黏土表面的酶可通过提高悬浮液的pH值以活性形式解吸。随后是一种较慢的、与温度有关的固定过程,可能是通过氢键作用,导致蛋白质不可逆地吸附到黏土表面。有人提出,葡萄糖氧化酶吸附到黏土表面时,蛋白质结构会展开,从而使蛋白质能够渗透到蒙脱石的层间空间。这一观点基于观察到蒙脱石膨胀至23埃,以及在pH 4.5条件下,随着葡萄糖氧化酶 - 黏土复合物孵育时间延长,第二种蛋白质溶菌酶的吸附量减少。

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