Porta Exequiel O J, Kalesh Karunakaran, Isern Jaime A, Steel Patrick G
Department of Chemistry, Durham University, Durham, UK.
School of Health and Life Sciences, Teesside University, Middlesbrough, UK.
Methods Mol Biol. 2025;2921:119-137. doi: 10.1007/978-1-0716-4502-4_6.
Identifying new enzymes and gaining insights into their mode of action (and inhibition) is a critical step in drug discovery. In this chapter, we describe a novel methodology that accelerates this process by combining the precision of activity-based protein profiling (ABPP) with the efficiency of microplate assay technology. Central to this approach is the use of competitive ABPP, which utilizes an activity-based probe (ABP) to directly observe and characterize the interactions between inhibitors and an enzyme. In this study, we use an in-house fluorophosphonate (FP)-based probe, as an example of an electrophilic probe, and pig liver esterase (PLE), as a model enzyme. Simple chemical modification of PLE to introduce a streptavidin tag enables its immobilization and presentation on a biotinylated assay plate. Subsequent competitive ABPP experiments using FP probes and a commercially derived compound library can be run in parallel. This setup allows for the identification of new inhibitors and the estimation of IC values in a single operation. This chapter provides a comprehensive protocol for the synthesis of ABPP probes, preparation of enzyme solutions, and execution of plate-based assays. It offers a robust platform for discovering and characterizing novel inhibitors of enzymes with unknown structures or substrate specificities. By applying this technique, we not only expedite the identification of potential drug candidates but also gain deeper insights into their modes of action, thereby enhancing our understanding of their therapeutic potential.
鉴定新酶并深入了解其作用方式(及抑制方式)是药物研发中的关键一步。在本章中,我们描述了一种新颖的方法,该方法通过将基于活性的蛋白质谱分析(ABPP)的精确性与微孔板检测技术的高效性相结合来加速这一过程。这种方法的核心是使用竞争性ABPP,它利用基于活性的探针(ABP)直接观察和表征抑制剂与酶之间的相互作用。在本研究中,我们使用一种内部基于氟膦酸酯(FP)的探针作为亲电探针的示例,并使用猪肝酯酶(PLE)作为模型酶。对PLE进行简单的化学修饰以引入链霉亲和素标签,可使其固定并呈现在生物素化的检测板上。随后使用FP探针和市售化合物库进行的竞争性ABPP实验可以并行进行。这种设置允许在一次操作中鉴定新的抑制剂并估计IC值。本章提供了ABPP探针合成、酶溶液制备以及基于板的检测执行的全面方案。它为发现和表征具有未知结构或底物特异性的酶的新型抑制剂提供了一个强大的平台。通过应用这项技术,我们不仅加快了潜在药物候选物的鉴定,还更深入地了解了它们的作用方式,从而增强了我们对其治疗潜力的理解。