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扩散限制固定化酶反应的温度依赖性

Temperature dependence of a diffusion-limited immobilized enzyme reaction.

作者信息

Buchholz K, Rüth W

出版信息

Biotechnol Bioeng. 1976 Jan;18(1):95-104. doi: 10.1002/bit.260180108.

Abstract

The apparent activation energy of N-alpha-benzoyl-L-arginine-ethyl ester (BAEE) hydrolysis by immobilized trypsin varies with the bulk substrate concentration from its maximum value, comparable to that of the free enzyme, to considerably lower values. Thus, with a concentration change from 3 x 10(-2) to 10(-4) M the apparent activation energy diminishes from 9.5 to 4.5 kcal/mol. This experimental finding is interpreted to be due to Michaelis-type kinetics in a heterogeneous system, in one case reflecting the temperature dependence of the maximal enzyme reaction rate, in another case illustrating the diffusion limited overall reaction at low substrate concentrations. As a consequence it may not be feasible to operate a reaction at elevated temperatures in a high conversion range, since diffusion limitation may restrict the enhancement of the overall reaction rate. Some further data are given concerning the buffer effect on the reaction rate, which should occur due to its limitation by proton transfer in the buffer-free system.

摘要

固定化胰蛋白酶催化N-α-苯甲酰-L-精氨酸乙酯(BAEE)水解的表观活化能随底物浓度的变化而变化,从与游离酶相当的最大值降至低得多的值。因此,当浓度从3×10⁻² M 变为10⁻⁴ M时,表观活化能从9.5 kcal/mol降至4.5 kcal/mol。这一实验发现被解释为是由于非均相体系中的米氏动力学,一种情况反映了最大酶反应速率的温度依赖性,另一种情况说明了在低底物浓度下扩散限制了整体反应。因此,在高转化率范围内于高温下进行反应可能不可行,因为扩散限制可能会限制整体反应速率的提高。还给出了一些关于缓冲液对反应速率影响的进一步数据,这应该是由于在无缓冲体系中质子转移对反应速率的限制而产生的。

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