Boursier Michelle E, Levin Sergiy, Hurst Robin, Ohana Rachel Friedman
Promega Corporation, Fitchburg, Wisconsin, USA.
Promega Biosciences LLC, San Luis Obispo, California, USA.
Bio Protoc. 2020 Dec 20;10(24):e3861. doi: 10.21769/BioProtoc.3861.
G-protein coupled receptors (GPCRs) remain at the forefront of drug discovery efforts. Detailed assessment of features contributing to GPCR ligand engagement in a physiologically relevant environment is imperative to the development of new therapeutics with improved efficacy. Traditionally, binding properties such as affinity and kinetics were obtained using biochemical radioligand binding assays. More recently, the high specificity of resonance energy transfer has been leveraged toward the development of homogeneous cell-based proximity assays with capacity for real-time kinetic measurements. This suite of ligand binding protocols couples the specificity of bioluminescent resonance energy transfer (BRET) with the sensitivity afforded by the luminescent HiBiT peptide. The BRET format is used to quantify dynamic interactions between ligands and their cognate HiBiT-tagged GPCRs through competitive binding with fluorescent Tracers. At the same time, high affinity complementation of HiBiT with the cell impermeable LgBiT limits the bright bioluminescence donor signal to the cell surface and eliminates luminescence background from unoccupied receptors present in intracellular compartments.
G蛋白偶联受体(GPCRs)仍然是药物研发工作的前沿领域。在生理相关环境中详细评估有助于GPCR配体结合的特征,对于开发疗效更佳的新疗法至关重要。传统上,诸如亲和力和动力学等结合特性是通过生化放射性配体结合试验获得的。最近,共振能量转移的高特异性已被用于开发基于细胞的均相邻近分析方法,该方法能够进行实时动力学测量。这套配体结合方案将生物发光共振能量转移(BRET)的特异性与发光HiBiT肽提供的灵敏度相结合。BRET形式用于通过与荧光示踪剂的竞争性结合来量化配体与其同源HiBiT标记的GPCR之间的动态相互作用。同时,HiBiT与细胞不可渗透的LgBiT的高亲和力互补将明亮的生物发光供体信号限制在细胞表面,并消除了细胞内区室中未占据受体产生的发光背景。