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A dual-readout F(2) assay that combines fluorescence resonance energy transfer and fluorescence polarization for monitoring bimolecular interactions.

机译:结合荧光共振能量转移和荧光偏振监测双分子相互作用的双读数F(2)分析。

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摘要

Forster (fluorescence) resonance energy transfer (FRET) and fluorescence polarization (FP) are widely used technologies for monitoring bimolecular interactions and have been extensively used in high-throughput screening (HTS) for probe and drug discovery. Despite their popularity in HTS, it has been recognized that different assay technologies may generate different hit lists for the same biochemical interaction. Due to the high cost of large-scale HTS campaigns, one has to make a critical choice to employee one assay platform for a particular HTS. Here we report the design and development of a dual-readout HTS assay that combines two assay technologies into one system using the Mcl-1 and Noxa BH3 peptide interaction as a model system. In this system, both FP and FRET signals were simultaneously monitored from one reaction, which is termed Dual-Readout F(2) assay has been optimized in a 1,536-well ultra-HTS format for the discovery of Mcl-1 protein inhibitors and achieved a robust performance. This F(2) assay was further validated by screening a library of 102,255 compounds. As two assay platforms are utilized for the same target simultaneously, hit information is enriched without increasing the screening cost. This strategy can be generally extended to other FP-based assays and is expected to enrich primary HTS information and enhance the hit quality of HTS campaigns.
机译:Forster(荧光)共振能量转移(FRET)和荧光偏振(FP)是用于监视双分子相互作用的广泛使用的技术,并已广泛用于探针和药物发现的高通量筛选(HTS)。尽管它们在HTS中很受欢迎,但已经认识到,不同的测定技术可能为相同的生化相互作用生成不同的命中列表。由于大规模HTS活动的成本高昂,因此必须为员工做出一项关键选择,即针对特定HTS的一种检测平台。在这里,我们报告设计和开发的双读数HTS分析,该组合使用Mcl-1和Noxa BH3肽相互作用作为模型系统,将两种分析技术结合到一个系统中。在该系统中,从一个反应中同时监测了FP和FRET信号,这被称为Dual-Readout F(2)分析,已以1,536孔超HTS格式进行了优化,以发现Mcl-1蛋白抑制剂并实现了强大的性能。通过筛选102,255种化合物的库进一步验证了该F(2)分析的有效性。由于两个测定平台同时用于同一靶标,因此丰富了命中信息,而不会增加筛选成本。该策略通常可以扩展到其他基于FP的分析,并且有望丰富主要的HTS信息并提高HTS活动的命中质量。

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