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离子强度依赖性底物对蛋清溶菌酶裂解藤黄微球菌的抑制作用。

Ionic-strength-dependent substrate inhibition of the lysis of Micrococcus luteus by hen egg-white lysozyme.

作者信息

Verhamme I M, Van Dedem G W, Lauwers A R

机构信息

Laboratory of General Biochemistry and Physical Pharmacy, State University, Gent, Belgium.

出版信息

Eur J Biochem. 1988 Mar 15;172(3):615-20. doi: 10.1111/j.1432-1033.1988.tb13933.x.

Abstract

The kinetics of lysis of Micrococcus luteus by hen egg-white lysozyme in dilute buffer media is characterized by pronounced substrate inhibition. This effect occurs within the complete pH range where lysozyme activity is detectable. The electrostatic potential of the negatively charged cell-wall proteoglycan increases with decreasing ionic strength, resulting in an enhanced affinity between proteoglycan and lysozyme and probably favouring multipoint substrate attachment. For the lysozyme-catalyzed hydrolysis of cell-wall proteoglycan three plausible mechanisms of substrate inhibition can be postulated. Two out of the three models fit our experimental data, the simplest of the two providing the most rigorous information on the kinetic parameters Km, V and Ki. Three graphical methods consistent with the chosen model were applied for preliminary parameter estimation and the constants obtained were compared to those from nonlinear least-squares analysis. If substrate inhibition is neglected it is shown that serious bias is imposed upon the parameters.

摘要

在稀缓冲液介质中,鸡蛋清溶菌酶对藤黄微球菌的裂解动力学具有明显的底物抑制特征。这种效应在溶菌酶活性可检测的整个pH范围内都会出现。带负电荷的细胞壁蛋白聚糖的静电势随离子强度降低而增加,导致蛋白聚糖与溶菌酶之间的亲和力增强,并且可能有利于多点底物附着。对于溶菌酶催化的细胞壁蛋白聚糖水解,可以假定三种合理的底物抑制机制。三种模型中的两种符合我们的实验数据,其中最简单的一种提供了关于动力学参数Km、V和Ki的最精确信息。应用了三种与所选模型一致的图形方法进行初步参数估计,并将获得的常数与非线性最小二乘法分析得到的常数进行比较。如果忽略底物抑制,则表明会对参数产生严重偏差。

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