Tanega Cordelle, Shen Min, Mott Bryan T, Thomas Craig J, MacArthur Ryan, Inglese James, Auld Douglas S
NIH Chemical Genomics Center, National Institutes of Health, Bethesda, Maryland, USA.
Assay Drug Dev Technol. 2009 Dec;7(6):606-14. doi: 10.1089/adt.2009.0230.
Assays for ATPases have been enabled for high-throughput screening (HTS) by employing firefly luciferase to detect the remaining ATP in the assay. However, for any enzyme assay, measurement of product formation is a more sensitive assay design. Recently, technologies that allow detection of the ADP product from ATPase reactions have been described using fluorescent methods of detection. We describe here the characterization of a bioluminescent assay that employs firefly luciferase in a coupled-enzyme assay format to enable detection of ADP levels from ATPase assays (ADP-Glo, Promega Corp.). We determined the performance of the ADP-Glo assay in 1,536-well microtiter plates using the protein kinase Clk4 and a 1,352 member kinase focused combinatorial library. The ADP-Glo assay was compared to the Clk4 assay performed using a bioluminescence ATP-depletion format (Kinase-Glo, Promega Corp). We performed this analysis using quantitative HTS (qHTS) where we determined potency values for all library members and identified approximately 300 compounds with potencies ranging from as low as 50 nM to >10 microM, yielding a robust dataset for the comparison. Both assay formats showed high performance (Z'-factors approximately 0.9) and showed a similar potency distribution for the actives. We conclude that the bioluminescence ADP detection assay system is a viable generic alternative to the widely used ATP-depletion assay for ATPases and discuss the advantages and disadvantages of both approaches.
通过利用萤火虫荧光素酶检测分析中剩余的ATP,已实现了用于高通量筛选(HTS)的ATP酶分析。然而,对于任何酶分析而言,测量产物形成是一种更灵敏的分析设计。最近,已经报道了使用荧光检测方法来检测ATP酶反应中ADP产物的技术。我们在此描述一种生物发光分析的特性,该分析采用耦合酶分析形式的萤火虫荧光素酶,以实现从ATP酶分析中检测ADP水平(ADP-Glo,普洛麦格公司)。我们使用蛋白激酶Clk4和一个包含1352个成员的激酶聚焦组合文库,在1536孔微量滴定板中测定了ADP-Glo分析的性能。将ADP-Glo分析与使用生物发光ATP消耗形式(Kinase-Glo,普洛麦格公司)进行的Clk4分析进行了比较。我们使用定量高通量筛选(qHTS)进行了此分析,在该分析中我们确定了所有文库成员的效价,并鉴定出约300种效价范围低至50 nM至>10 μM的化合物,从而产生了一个强大的数据集用于比较。两种分析形式均显示出高性能(Z'因子约为0.9),并且活性物质的效价分布相似。我们得出结论,生物发光ADP检测分析系统是广泛使用的ATP酶ATP消耗分析的一种可行的通用替代方法,并讨论了两种方法的优缺点。