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A miniaturized glucocorticoid receptor translocation assay using enzymatic fragment complementation evaluated with qHTS.

机译:使用qHTS评估的酶促片段互补的微型糖皮质激素受体转运试验。

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Nuclear translocation is an important step in glucocorticoid receptor (GR) signaling and assays that measure this process allow the identification of nuclear receptor ligands independent of subsequent functional effects. To facilitate the identification of GR-translocation agonists, an enzyme fragment complementation (EFC) cell-based assay was scaled to a 1536-well plate format to evaluate 9,920 compounds using a quantitative high throughput screening (qHTS) strategy where compounds are assayed at multiple concentrations. In contrast to conventional assays of nuclear translocation the qHTS assay described here was enabled on a standard luminescence microplate reader precluding the requirement for imaging methods. The assay uses beta-galactosidase alpha complementation to indirectly detect GR-translocation in CHO-K1 cells. 1536-well assay miniaturization included the elimination of a media aspiration step, and the optimized assay displayed a Z' of 0.55. qHTS yielded EC(50) values for all 9,920 compoundsand allowed us to retrospectively examine the dataset as a single concentration-based screen to estimate the number of false positives and negatives at typical activity thresholds. For example, at a 9 microM screening concentration, the assay showed an accuracy that is comparable to typical cell-based assays as judged by the occurrence of false positives that we determined to be 1.3% or 0.3%, for a 3sigma or 6sigma threshold, respectively. This corresponds to a confirmation rate of approximately 30% or approximately 50%, respectively. The assay was consistent with glucocorticoid pharmacology as scaffolds with close similarity to dexamethasone were identified as active, while, for example, steroids that act as ligands to other nuclear receptors such as the estrogen receptor were found to be inactive.
机译:核易位是糖皮质激素受体(GR)信号传导中的重要步骤,测量此过程的测定方法可独立于后续功能作用而鉴定核受体配体。为了促进GR易位激动剂的鉴定,使用基于酶片段互补(EFC)细胞的测定法,将其缩放至1536孔板格式,以使用定量高通量筛选(qHTS)策略对9,920种化合物进行评估,其中以多个浓度。与常规的核转运分析方法不同,此处描述的qHTS分析方法可在标准发光微孔板读取器上进行,无需成像方法。该测定法使用β-半乳糖苷酶α互补来间接检测CHO-K1细胞中的GR易位。 1536孔测定法的小型化包括消除培养基抽吸步骤,优化的测定法显示Z'为0.55。 qHTS产生了所有9,920种化合物的EC(50)值,并允许我们回顾该数据集,作为基于浓度的单个屏幕来估计典型活动阈值处假阳性和阴性的数量。例如,在9 microM的筛查浓度下,该检测方法的准确度可与典型的基于细胞的检测方法相媲美,根据3sigma或6sigma阈值的假阳性的发生判断,我们将其确定为1.3%或0.3%,分别。这分别对应于大约30%或大约50%的确认率。该测定与糖皮质激素药理学一致,因为与地塞米松具有高度相似性的支架被鉴定为具有活性,而例如,充当其他核受体(如雌激素受体)配体的类固醇则无活性。

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