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采用显色法对蛋白酶和糖苷酶的反应速率进行测定。

Reaction rate measurements of proteases and glycosidases with chromogenic methods.

作者信息

Ruhnke M, Gossrau R

机构信息

Department of Anatomy, Free University of Berlin, West Germany.

出版信息

Histochem J. 1989 Sep-Oct;21(9-10):535-44. doi: 10.1007/BF01753354.

Abstract

Simultaneous azo-coupling and indigogenic methods were evaluated for the quantitative histochemical assay of the plasma membrane proteases gamma-glutamyl transpeptidase (EC 2.3.2.2) and dipeptidyl peptidase IV (EC 3.4.14.5) and the glycosidases maltase-glucoamylase and glucoamylase (EC 3.2.1.20) in decidual cells, jejunal enterocytes and renal proximal tubulocytes. Using kinetic (continuous) microdensitometry, a linear increase in the final reaction product was found from 3 up to 10 min, depending on the substrate concentration and the plasma membrane glycosidase or protease under investigation. Combined continuous and end point (static) microdensitometry revealed a linear relationship between the section thickness (enzyme concentration) and final reaction product up to 12 microns for the proteases and up to 16 microns for the glycosidases. Apparent Km and Vmax values were calculated with a computerized version of the direct linear plot and compared with the results obtained with the linear transformations according to Lineweaver-Burk, Eadie-Hofstee and Hanes. Apparent Km and Vmax values for the proteases were calculated separately for each animal and were 1.82 mM and 1.02 mM and 2.43 arbitrary units (a.u.) and 1.67 a.u. (gamma-glutamyl transpeptidase, decidua) and 0.42 mM and 0.38 mM and 0.29 and 0.26 a.u. (dipeptidyl peptidase IV, decidua). For the alpha-D-glucosidases, the corresponding values were 0.23 mM and 0.15 a.u. (kidney) and 0.55 mM and 0.20 a.u. (jejunum). The results show the suitability of the indigogenic methods for quantitative histochemical measurements of plasma membrane alpha-D-glucosidases, whereas the simultaneous azo-coupling procedures seemed to be less suitable for the quantification of surface membrane proteases, due to, for example, interactions of diazonium salts with amino acid or peptide substrates, reaction products and peptide activators.

摘要

采用偶氮偶联法和靛蓝生成法,对蜕膜细胞、空肠肠上皮细胞和肾近端小管细胞中的质膜蛋白酶γ-谷氨酰转肽酶(EC 2.3.2.2)、二肽基肽酶IV(EC 3.4.14.5)以及糖苷酶麦芽糖酶-葡糖淀粉酶和葡糖淀粉酶(EC 3.2.1.20)进行了定量组织化学分析。使用动力学(连续)显微密度测定法,根据底物浓度和所研究的质膜糖苷酶或蛋白酶,在3至10分钟内最终反应产物呈线性增加。联合连续和终点(静态)显微密度测定法显示,对于蛋白酶,切片厚度(酶浓度)与最终反应产物之间在12微米以内呈线性关系;对于糖苷酶,在16微米以内呈线性关系。使用直接线性图的计算机版本计算表观Km和Vmax值,并与根据Lineweaver-Burk、Eadie-Hofstee和Hanes线性变换得到的结果进行比较。蛋白酶的表观Km和Vmax值针对每只动物分别计算,γ-谷氨酰转肽酶(蜕膜)的表观Km和Vmax值分别为1.82 mM和1.02 mM以及2.43任意单位(a.u.)和1.67 a.u.;二肽基肽酶IV(蜕膜)的表观Km和Vmax值分别为0.42 mM和0.38 mM以及0.29和0.26 a.u.。对于α-D-葡糖苷酶,肾中的相应值为0.23 mM和0.15 a.u.,空肠中的相应值为0.55 mM和0.20 a.u.。结果表明,靛蓝生成法适用于质膜α-D-葡糖苷酶的定量组织化学测量,而同时偶氮偶联法似乎不太适合表面膜蛋白酶的定量,例如,这是由于重氮盐与氨基酸或肽底物、反应产物和肽激活剂之间的相互作用。

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