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关于固定化双酶系统的动力学研究。

Kinetic studies dealing with an immobilized bienzyme system.

作者信息

Hervagault J F, Joly G, Thomas D

出版信息

Eur J Biochem. 1975 Feb 3;51(1):19-23. doi: 10.1111/j.1432-1033.1975.tb03901.x.

Abstract

The binding of enzymes into artificial membranes makes possible a study of the interaction between membrane structure and enzyme kinetics within a simple context. Artificial protein membranes bearing a bienzyme system (xanthine oxidase, uricase) are produced by using a co-crosslinking method. The inhibition of uricase was shown to be dependent not only on the concentration of inhibitor in the bulk solution, but also on the kinetic properties of the membrane-bound enzymes. In the presence of xanthine oxidase inside the structure the uricase inhibition by xanthine is less important than in solution. Under defined conditions the activity was found to be higher in the presence of inhibitor than in its absence. Due to diffusion limitations this specific bienzyme system is more efficient when immobilized inside a membrane than when in solution.

摘要

将酶结合到人工膜中,使得在一个简单的环境中研究膜结构与酶动力学之间的相互作用成为可能。通过共交联法制备了带有双酶系统(黄嘌呤氧化酶、尿酸酶)的人工蛋白质膜。结果表明,尿酸酶的抑制不仅取决于本体溶液中抑制剂的浓度,还取决于膜结合酶的动力学性质。在结构内部存在黄嘌呤氧化酶的情况下,黄嘌呤对尿酸酶的抑制作用比在溶液中时要小。在特定条件下,发现存在抑制剂时的活性高于不存在抑制剂时的活性。由于扩散限制,这种特定的双酶系统固定在膜内时比在溶液中时更有效。

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