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有机溶剂的不混溶性对天然糜蛋白酶及其固定化稳定衍生物的活性/稳定性的影响。

Effect of immiscible organic solvents on activity/stability of native chymotrypsin and immobilized-stabilized derivatives.

机构信息

Department of Bioscience and Biotechnology, University of Strathclyde, Glasgow, UK.

出版信息

Biotechnol Bioeng. 1992 Jan 5;39(1):75-84. doi: 10.1002/bit.260390112.

Abstract

We have developed different activity/stability tests to evaluate the possibilities of fully dispersed chymotrypsin derivatives as industrial catalysts in biphasic systems. We have tested different immiscible organic solvents (log P ranged from 0.65 to 2.8) and used different enzyme derivatives (soluble chymotrypsin and one-point and multipoint covalent attached derivatives). Special emphasis has been given to the role of the "exact composition of the aqueous phase."High phosphate concentrations largely protect every hymotrypsin derivative from the distorting effects of dissolved solvent molecules. The effects on the activity and stability of soluble chymotrypsin due to saturating solvent concentrations in an aqueous solution, and the much more severe effects of contact with the phase interface in a stirred biphasic system, all show the opposite trend for the influence of solvent polarity to that generally observed for biocatalysts. For example, deleterious effects decline in the order chloroform, dichloromethane, ethyl acetate. On the contrary, with or without stirring, our stabilized chymotrypsin-agarose derivatives are much more stable against these water-immiscible solvents, and their relative effects follow the normal trend. From these integrated activity and stability tests we can conclude that fully dispersed immobilized-stabilized derivatives seem to be an interesting alternative to develop industrial biphasic processes catalyzed by chymotrypsin.

摘要

我们开发了不同的活性/稳定性测试,以评估完全分散的糜蛋白酶衍生物作为两相体系中工业催化剂的可能性。我们测试了不同的不混溶有机溶剂(log P 范围从 0.65 到 2.8),并使用了不同的酶衍生物(可溶性糜蛋白酶和单点和多点共价附着衍生物)。特别强调了“水相的确切组成”的作用。高磷酸盐浓度在很大程度上保护了每一种糜蛋白酶衍生物免受溶解溶剂分子的扭曲影响。由于在水溶液中溶剂浓度达到饱和,对可溶性糜蛋白酶的活性和稳定性的影响,以及在搅拌两相体系中与相界面接触的影响,都显示出与通常观察到的生物催化剂相反的趋势。例如,溶剂极性的有害影响按氯仿、二氯甲烷、乙酸乙酯的顺序递减。相反,无论是搅拌还是不搅拌,我们稳定的糜蛋白酶-琼脂糖衍生物对这些与水不混溶的溶剂更稳定,它们的相对影响遵循正常趋势。从这些综合的活性和稳定性测试中,我们可以得出结论,完全分散的固定化稳定衍生物似乎是开发由糜蛋白酶催化的工业两相过程的一个有趣的选择。

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