首页> 外文期刊>Analytical Biochemistry: An International Journal of Analytical and Preparative Methods >A miniaturized cell-based fluorescence resonance energy transfer assay for insulin-receptor activation
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A miniaturized cell-based fluorescence resonance energy transfer assay for insulin-receptor activation

机译:用于胰岛素受体激活的基于细胞的微型细胞荧光共振能量转移测定

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摘要

This report describes the development, optimization, and implementation of a miniaturized cell-based assay for the identification of small-molecule insulin mimetics and potentiators. Cell-based assays are attractive formats for compound screening because they present the molecular targets in their cellular environment. A fluorescence resonance energy transfer (FRET) cell-based assay that measures the insulin-dependent colocalization of Akt2 fused with either cyan fluorescent protein or yellow fluorescent protein to the cellular membrane was developed. This ratiometric FRET assay was miniaturized into a robust, yet sensitive 3456-well nanoplate assay with Z' factors of similar to 0.6 despite a very small assay window (less than twofold full activation with insulin). The FRET assay was used for primary screening of a large compound collection for insulin-receptor agonists and potentiators. To prioritize compounds for further development, primary hits were tested in two additional assays, a biochemical time-resolved fluorescence resonance energy transfer assay to measure insulin-receptor phosphorylation and a translocation-based imaging assay. Results from the three assays were combined to yield 11 compounds as potential leads for the development of insulin mimetics or potentiators. (c) 2006 Elsevier Inc. All rights reserved.
机译:该报告描述了用于识别小分子胰岛素模拟物和增强剂的基于细胞的小型化测定方法的开发,优化和实施。基于细胞的测定法是化合物筛选的有吸引力的形式,因为它们在其细胞环境中呈递分子靶标。开发了一种基于荧光共振能量转移(FRET)细胞的测定方法,该方法可测量与青色荧光蛋白或黄色荧光蛋白融合的Akt2的胰岛素依赖性共定位,并将其定位在细胞膜上。尽管检测窗口很小(尽管胰岛素的完全激活少于两倍),但该比例FRET检测仍被小型化为功能强大但敏感的3456孔纳米板检测,Z'因子接近0.6。 FRET分析用于初步筛选大量的胰岛素受体激动剂和增强剂化合物。为了确定化合物的优先级以进行进一步开发,在另外两种测定法中测试了主要命中物:一种用于测定胰岛素受体磷酸化的生化时间分辨荧光共振能量转移测定法,以及一种基于易位的成像测定法。将这三种测定的结果相结合,可得到11种化合物,作为开发胰岛素模拟物或增强剂的潜在先导。 (c)2006 Elsevier Inc.保留所有权利。

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