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木豆凝集素载体上转化酶的固定化与稳定化

Immobilization and stabilization of invertase on Cajanus cajan lectin support.

作者信息

Ahmad S, Anwar A, Saleemuddin M

机构信息

Department of Biochemistry, Faculty of Life Sciences and Institute of Biotechnology, Aligarh Muslim University, Uttar Pradesh, India.

出版信息

Bioresour Technol. 2001 Sep;79(2):121-7. doi: 10.1016/s0960-8524(01)00053-0.

Abstract

Use of lectins as ligands for the immobilization and stabilization of glycoenzymes has immense application in enzyme research and industry. But their widespread use could be limited by the high cost of their production. In the present study preparation of a novel and inexpensive lectin support for use in the immobilization of glycoenzymes containing mannose or glucose residues in their carbohydrate moiety has been described. Cajanus cajan lectin (CCL) coupled covalently to cyanogen bromide activated Seralose 4B could readily bind enzymes such as invertase, glucoamylase and glucose oxidase. The immobilized and glutaraldehyde crosslinked preparations of invertase exhibited high resistance to inactivation upon exposure to enhanced temperature, pH, denaturants and proteolysis. Binding of invertase to CCL-Seralose was however found to be readily reversible in the presence of 1.0 M methyl alpha-D mannopyranoside. In a laboratory scale column reactor the CCL-Seralose bound invertase was stable for a month and retained more than 80% of its initial activity even after 60 days of storage at 4 degrees C. CCL-Seralose bound invertase exhibited marked stability towards temperature, pH changes and denaturants suggesting its potential to be used as an excellent support for the immobilization of other glycoenzymes as well.

摘要

使用凝集素作为固定化和稳定化糖酶的配体在酶研究和工业中具有广泛应用。但其广泛使用可能受到其生产成本高昂的限制。在本研究中,已描述了一种新型且廉价的凝集素载体的制备方法,该载体用于固定化在其碳水化合物部分含有甘露糖或葡萄糖残基的糖酶。共价偶联到溴化氰活化的丝胶糖4B上的木豆凝集素(CCL)能够轻松结合诸如转化酶、葡糖淀粉酶和葡萄糖氧化酶等酶。转化酶的固定化及戊二醛交联制剂在暴露于升高的温度、pH值、变性剂和蛋白水解作用时表现出高度的抗失活能力。然而,发现在1.0 M α-D-吡喃甘露糖苷存在下,转化酶与CCL-丝胶糖的结合易于逆转。在实验室规模的柱式反应器中,CCL-丝胶糖结合的转化酶稳定一个月,即使在4℃储存60天后仍保留其初始活性的80%以上。CCL-丝胶糖结合的转化酶对温度、pH值变化和变性剂表现出显著的稳定性,这表明它也有潜力用作固定化其他糖酶的优良载体。

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