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一种与抑制剂筛选兼容的基于荧光的单酰甘油脂肪酶检测方法。

A fluorescence-based assay for monoacylglycerol lipase compatible with inhibitor screening.

作者信息

Wang Yuren, Chanda Pranab, Jones Philip G, Kennedy Jeffrey D

机构信息

Neuroscience Department, Wyeth Research, Monmouth Junction, NJ 08852, USA.

出版信息

Assay Drug Dev Technol. 2008 Jun;6(3):387-93. doi: 10.1089/adt.2007.122.

Abstract

A novel fluorescence-based assay of monoacylglycerol lipase (MAGL) activity that is simple, sensitive, and amenable to the screening of small molecule inhibitors is described. Purified recombinant human MAGL protein and 7-hydroxycoumarinyl-arachidonate (7-HCA), a fluorogenic substrate for MAGL, were employed in the assay. MAGL protein catalyzes the hydrolysis of 7-HCA to generate arachidonic acid and the highly fluorescent 7-hydroxyl coumarin (7-HC). Release of 7-HC was measured using a fluorometer. MAGL protein catalyzed the hydrolysis of 7-HCA with an apparent K(m) of 9.8 microM and V(max) of 1.7 mmol/min/mg of protein. The assay is specific for MAGL as assay buffer alone or heat-denatured MAGL protein had no significant activity against 7-HCA. Furthermore, MAGL activity was inhibited in a dose-dependent manner by the specific inhibitor URB602 as well as N-arachidonyl maleimide with 50% inhibitory concentration values of 3.1 microM and 155 nM, respectively. The assay was further optimized under different conditions, including pH range and bovine serum albumin protein and dimethyl sulfoxide concentrations. The assay was found to be reproducible, having Z' values ranging from 0.7 to 0.9, and is therefore suitable for high-throughput screening.

摘要

本文描述了一种基于荧光的新型单酰基甘油脂肪酶(MAGL)活性检测方法,该方法简单、灵敏,适用于小分子抑制剂的筛选。检测中使用了纯化的重组人MAGL蛋白和7-羟基香豆素基花生四烯酸酯(7-HCA),后者是MAGL的一种荧光底物。MAGL蛋白催化7-HCA水解生成花生四烯酸和高荧光性的7-羟基香豆素(7-HC)。使用荧光计测量7-HC的释放量。MAGL蛋白催化7-HCA水解的表观K(m)为9.8 microM,V(max)为1.7 mmol/min/mg蛋白。该检测对MAGL具有特异性,因为仅检测缓冲液或热变性的MAGL蛋白对7-HCA没有显著活性。此外,特异性抑制剂URB602以及N-花生四烯酰马来酰亚胺以剂量依赖性方式抑制MAGL活性,其50%抑制浓度值分别为3.1 microM和155 nM。该检测在不同条件下进一步优化,包括pH范围、牛血清白蛋白浓度和二甲基亚砜浓度。该检测具有可重复性,Z'值在0.7至0.9之间,因此适用于高通量筛选。

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