Department of Pharmaceutical Chemistry and Small Molecule Discovery Center, University of California, San Francisco 94158, USA.
Department of Pharmaceutical Chemistry and Small Molecule Discovery Center, University of California, San Francisco 94158, USA.
SLAS Discov. 2024 Jul;29(5):100165. doi: 10.1016/j.slasd.2024.100165. Epub 2024 May 24.
We report the development of a 384-well formatted NanoBRET assay to characterize molecular glues of 14-3-3/client interactions in living cells. The seven isoforms of 14-3-3 are dimeric hub proteins with diverse roles including transcription factor regulation and signal transduction. 14-3-3 interacts with hundreds of client proteins to regulate their function and is therefore an ideal therapeutic target when client selectivity can be achieved. We have developed the NanoBRET system for three 14-3-3σ client proteins CRAF, TAZ, and estrogen receptor α (ERα), which represent three specific binding modes. We have measured stabilization of 14-3-3σ/client complexes by molecular glues with EC values between 100 nM and 1 μM in cells, which align with the EC values calculated by fluorescence anisotropy in vitro. Developing this NanoBRET system for the hub protein 14-3-3σ allows for a streamlined approach, bypassing multiple optimization steps in the assay development process for other 14-3-3σ clients. The NanoBRET system allows for an assessment of PPI stabilization in a more physiologically relevant, cell-based environment using full-length proteins. The method is applicable to diverse protein-protein interactions (PPIs) and offers a robust platform to explore libraries of compounds for both PPI stabilizers and inhibitors.
我们开发了一种 384 孔格式的 NanoBRET 测定法,用于在活细胞中表征 14-3-3/客户相互作用的分子胶。14-3-3 有七种同工型,是具有转录因子调节和信号转导等多种功能的二聚体枢纽蛋白。14-3-3 与数百种客户蛋白相互作用,调节其功能,因此当能够实现客户选择性时,它是一个理想的治疗靶点。我们已经为三个 14-3-3σ客户蛋白 CRAF、TAZ 和雌激素受体α(ERα)开发了 NanoBRET 系统,它们代表三种特定的结合模式。我们已经测量了分子胶对 14-3-3σ/客户复合物的稳定作用,其 EC 值在细胞中为 100 nM 至 1 μM,与体外荧光各向异性计算的 EC 值一致。为枢纽蛋白 14-3-3σ 开发这种 NanoBRET 系统可以采用简化的方法,避免了其他 14-3-3σ 客户在测定开发过程中的多个优化步骤。NanoBRET 系统允许使用全长蛋白在更接近生理的基于细胞的环境中评估 PPI 的稳定作用。该方法适用于各种蛋白质-蛋白质相互作用(PPIs),并提供了一个强大的平台,用于探索 PPI 稳定剂和抑制剂的化合物文库。