Zwier Jurriaan M, Roux Thomas, Cottet Martin, Durroux Thierry, Douzon Stephanie, Bdioui Sara, Gregor Nathalie, Bourrier Emmanuel, Oueslati Nadia, Nicolas Ludovic, Tinel Norbert, Boisseau Chloe, Yverneau Paul, Charrier-Savournin Fabienne, Fink Michel, Trinquet Eric
Cisbio Bioassays, Bagnols-sur-Cèze, France.
J Biomol Screen. 2010 Dec;15(10):1248-59. doi: 10.1177/1087057110384611. Epub 2010 Oct 25.
G-protein-coupled receptors (GPCRs) are crucial cell surface receptors that transmit signals from a wide range of extracellular ligands. Indeed, 40% to 50% of all marketed drugs are thought to modulate GPCR activity, making them the major class of targets in the drug discovery process. Binding assays are widely used to identify high-affinity, selective, and potent GPCR drugs. In this field, the use of radiolabeled ligands has remained so far the gold-standard method. Here the authors report a less hazardous alternative for high-throughput screening (HTS) applications by the setup of a nonradioactive fluorescence-based technology named Tag-lite(®). Selective binding of various fluorescent ligands, either peptidic or not, covering a large panel of GPCRs from different classes is illustrated, particularly for chemokine (CXCR4), opioid (δ, µ, and κ), and cholecystokinin (CCK1 and CCK2) receptors. Affinity constants of well-known pharmacological agents of numerous GPCRs are in line with values published in the literature. The authors clearly demonstrate that the Tag-lite binding assay format can be successfully and reproducibly applied by using different cellular materials such as transient or stable recombinant cells lines expressing SNAP-tagged GPCR. Such fluorescent-based binding assays can be performed with adherent cells or cells in suspension, in 96- or 384-well plates. Altogether, this new technology offers great advantages in terms of flexibility, rapidity, and user-friendliness; allows easy miniaturization; and makes it completely suitable for HTS applications.
G蛋白偶联受体(GPCRs)是关键的细胞表面受体,可传递来自多种细胞外配体的信号。事实上,所有已上市药物中40%至50%被认为可调节GPCR活性,使其成为药物研发过程中的主要靶点类别。结合测定被广泛用于鉴定高亲和力、选择性和强效的GPCR药物。在该领域,使用放射性标记配体至今仍是金标准方法。在此,作者通过建立一种名为Tag-lite®的基于荧光的非放射性技术,报告了一种用于高通量筛选(HTS)应用的危害较小的替代方法。文中展示了各种荧光配体(无论是否为肽类)对来自不同类别的大量GPCR的选择性结合,特别是针对趋化因子(CXCR4)、阿片样物质(δ、μ和κ)以及胆囊收缩素(CCK1和CCK2)受体。众多GPCR的知名药理剂的亲和常数与文献中公布的值一致。作者清楚地证明,通过使用不同的细胞材料,如表达SNAP标签GPCR的瞬时或稳定重组细胞系,Tag-lite结合测定形式可以成功且可重复地应用。这种基于荧光的结合测定可以在贴壁细胞或悬浮细胞中,在96孔或384孔板中进行。总之,这项新技术在灵活性、快速性和用户友好性方面具有巨大优势;易于小型化;并且完全适用于HTS应用。