Molecular Functional Imaging Lab, ACTREC, Tata Memorial Centre, Navi Mumbai, India.
Methods Mol Biol. 2022;2525:239-257. doi: 10.1007/978-1-0716-2473-9_18.
Proteins play an important part in almost all life activities and across all organisms. Proteins occasionally act on their own but rather fulfill most of their biological tasks by cooperating with other proteins or ligand molecules. The bioluminescence resonance energy transfer (BRET) assay serves to measure dynamic events such as protein-protein or protein-ligand interactions in vitro or in-vivo. With several inherent attributes such as rapid and fairly sensitive ratio-metric measurements, assessment of interactions irrespective of protein location within the cellular compartment, cost-effectiveness consenting to high-throughput screening compatibility, makes BRET a popular genetic reporter-based assay system for protein-protein interaction (PPI) studies. Based on the Förster principle, BRET allows to judge if the proximity has been achieved between the interacting partners. In recent years, the BRET application has emerged as a significantly versatile assay format by using multiple detection devices such as a plate reader or in-vivo optical imaging platform, or even a bioluminescence microscope has expanded its scope for advancing PPI studies. Beyond the scope of quantitative measurement of PPIs, molecular optical imaging applications based on BRET assay have expanded the scope for screening pharmacological compounds by unifying live cell and in-vivo animal-/plant-based experiments using the same platform technology. In this chapter, we have given intricate methodological details for performing in-vitro and in-vivo BRET experiments, primarily by using donor/acceptor reporter protein combinations.
蛋白质在几乎所有的生命活动和所有生物中都起着重要的作用。蛋白质偶尔会自行发挥作用,但通过与其他蛋白质或配体分子合作,它们完成了大部分生物任务。生物发光共振能量转移(BRET)测定法用于测量体外或体内的蛋白质-蛋白质或蛋白质-配体相互作用等动态事件。BRET 具有一些固有属性,如快速且相当灵敏的比色测量、评估相互作用而不受细胞区室中蛋白质位置的影响、成本效益高,允许进行高通量筛选兼容性,使其成为一种流行的基于遗传报告的蛋白质-蛋白质相互作用(PPI)研究的测定系统。基于福斯特原理,BRET 可以判断相互作用的伙伴之间是否达到了接近程度。近年来,BRET 应用已经通过使用多种检测设备(如平板读数器或体内光学成像平台,甚至生物发光显微镜)扩展了其作为一种多功能测定格式的应用范围,从而扩展了 PPI 研究的范围。除了定量测量 PPI 的范围之外,基于 BRET 测定法的分子光学成像应用通过使用相同的平台技术将活细胞和体内动物/植物实验统一起来,扩大了筛选药理学化合物的范围。在本章中,我们给出了进行体外和体内 BRET 实验的详细方法学细节,主要是通过使用供体/受体报告蛋白组合。