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β-半乳糖苷酶催化荧光素单-β-D-半乳糖苷水解的动力学测定:一种用于强吸收性荧光底物的正面测量方法。

Kinetic assay of fluorescein mono-beta-D-galactoside hydrolysis by beta-galactosidase: a front-face measurement for strongly absorbing fluorogenic substrates.

作者信息

Huang Z J

机构信息

Molecular Probes, Inc., Eugene, Oregon 97402.

出版信息

Biochemistry. 1991 Sep 3;30(35):8530-4. doi: 10.1021/bi00099a005.

Abstract

A novel enzymatic assay method was developed for fluorogenic substrates that have significant intrinsic absorbance and fluorescence under the assay conditions. Fluorescein mono-beta-D-galactoside (FMG) was chosen as the substrate for the fluorescence enzymatic assay because of the high fluorescence of its hydrolytic product (fluorescein) and suitability of being hydrolyzed by beta-galactosidase. The fluorescence-concentration relationships for fluorescein and for FMG in both the right-angle detection mode of a fluorometer and the front-face detection mode of a fluorescence plate reader were exactly established and used to determine the kinetics of the enzyme assay. The results show that only front-face detection in the fluorescence plate reader can overcome the fluorescence concentration quenching that inevitably results from high absorbance by the intrinsically absorbing substrate in the conventional fluorometer, which utilizes right-angle detection. Only with front-face detection was the fluorescent assay of FMG hydrolysis under conditions of high optical density possible. The enzymatic measurements on the fluorescence plate reader were particularly efficient for determination of the enzyme kinetics because of the high rate of data collection. In this assay system, Michaelis-Menten constant Km and enzymatic catalysis rate k2 of FMG were determined as 117.6 microM and 22.7 mumol-(min.mg)-1, respectively. The results and methods described in this paper can be generalized for any assay using a fluorogenic substrate whether or not it has a high background absorbance.

摘要

针对在检测条件下具有显著固有吸光度和荧光的荧光底物,开发了一种新型酶促检测方法。由于其水解产物(荧光素)具有高荧光以及适合被β-半乳糖苷酶水解,选择荧光素单-β-D-半乳糖苷(FMG)作为荧光酶促检测的底物。精确建立了荧光素和FMG在荧光计的直角检测模式以及荧光酶标仪的前表面检测模式下的荧光-浓度关系,并用于确定酶促检测的动力学。结果表明,只有荧光酶标仪的前表面检测能够克服传统利用直角检测的荧光计中由固有吸收底物的高吸光度不可避免导致的荧光浓度猝灭。只有采用前表面检测,才有可能在高光学密度条件下对FMG水解进行荧光检测。由于数据采集速率高,在荧光酶标仪上进行的酶促测量对于确定酶动力学特别有效。在该检测系统中,FMG的米氏常数Km和酶催化速率k2分别测定为117.6 microM和22.7 mumol-(min.mg)-1。本文所述的结果和方法可推广用于任何使用荧光底物的检测,无论其是否具有高背景吸光度。

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