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通过共价连接到醛基琼脂糖凝胶上实现α-糜蛋白酶的固定化-稳定化

Immobilization-stabilization of alpha-chymotrypsin by covalent attachment to aldehyde-agarose gels.

作者信息

Guisán J M, Bastida A, Cuesta C, Fernandez-Lufuente R, Rosell C M

机构信息

Instituto de Catalisis, Unidad de Biocatalisis C.S.I.C., Campus de la Universidad Autonoma Cantoblanco, 28049-Madrid, Spain.

出版信息

Biotechnol Bioeng. 1991 Dec 5;38(10):1144-52. doi: 10.1002/bit.260381005.

Abstract

We have developed a strategy for immobilization-stabilization of alpha-chymotrypsin by multipoint covalent attachment of the enzyme, through its amino groups, to agarosealdehyde gels. We have studied the role of the main variables that control the intensity of these enzyme-support multi-interaction processes (surface density of aldehyde groups in the activated gel, contact time between the immobilized enzyme and the activated support prior to borohydride reduction of the derivatives, etc.). In this way, we have prepared a number of very different chymotrypsinagarose derivatives. Our best derivatives, with the most intense multipoint attachment, were more stable than one-point attached derivatives and were more than 60,000-fold more stable than soluble enzyme in the absence of autolysis phenomena. In spite of the dramatic stabilization, the catalytic activity of these derivatives is little changed (they only lose 35% of intrinsic activity after this intense enzyme-support multi-interaction process). In addition, we have also demonstrated the very high capacity of 6% aldehyde-agarose gels to immobilize pure chymotrypsin (40 mg enzyme/mL catalyst). Furthermore, we have been able to establish a clear correlation between enzyme-support multipoint covalent attachment, stabilization against very different denaturing agents (heat, urea, organic cosolvents), and insensitivity of those immobilized chymotrypsin molecules to some activating agents.

摘要

我们已开发出一种通过α-胰凝乳蛋白酶的氨基与琼脂糖醛凝胶进行多点共价连接来固定化-稳定化该酶的策略。我们研究了控制这些酶-载体多相互作用过程强度的主要变量的作用(活化凝胶中醛基的表面密度、固定化酶与活化载体在硼氢化钠还原衍生物之前的接触时间等)。通过这种方式,我们制备了许多差异很大的胰凝乳蛋白酶-琼脂糖衍生物。我们最好的衍生物,具有最强烈的多点连接,比单点连接的衍生物更稳定,并且在没有自溶现象的情况下比可溶性酶稳定超过60000倍。尽管有显著的稳定作用,但这些衍生物的催化活性变化不大(在这种强烈的酶-载体多相互作用过程后,它们仅损失35%的固有活性)。此外,我们还证明了6%醛基-琼脂糖凝胶固定纯胰凝乳蛋白酶的能力非常高(40毫克酶/毫升催化剂)。此外,我们能够在酶-载体多点共价连接、对非常不同的变性剂(热、尿素、有机共溶剂)的稳定性以及那些固定化胰凝乳蛋白酶分子对某些活化剂的不敏感性之间建立明确的相关性。

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