Yan Yu-Xin, Boldt-Houle Deborah M, Tillotson Bonnie P, Gee Melissa A, D'Eon Brian J, Chang Xiao-Jia, Olesen Corinne E M, Palmer Michelle A J
Applied Biosystems, Bedford, MA, USA.
J Biomol Screen. 2002 Oct;7(5):451-9. doi: 10.1177/108705702237677.
A novel cell-based functional assay to directly monitor G protein-coupled receptor (GPCR) activation in a high-throughput format, based on a common GPCR regulation mechanism, the interaction between beta-arrestin and ligand-activated GPCR, is described. A protein-protein interaction technology, the InteraX trade mark system, uses a pair of inactive beta-galactosidase (beta-gal) deletion mutants as fusion partners to the protein targets of interest. To monitor GPCR activation, stable cell lines expressing both GPCR- and beta-arrestin-beta-gal fusion proteins are generated. Following ligand stimulation, beta-arrestin binds to the activated GPCR, and this interaction drives functional complementation of the beta-gal mutant fragments. GPCR activation is measured directly by quantitating restored beta-gal activity. The authors have validated this assay system with two functionally divergent GPCRs: the beta2-adrenergic amine receptor and the CXCR2 chemokine-binding receptor. Both receptors are activated or blocked with known agonists and antagonists in a dose-dependent manner. The beta2-adrenergic receptor cell line was screened with the LOPAC trade mark compound library to identify both agonists and antagonists, validating this system for high-throughput screening performance in a 96-well microplate format. Hit specificity was confirmed by quantitating the level of cAMP. This assay system has also been performed in a high-density (384-well) microplate format. This system provides a specific, sensitive, and robust methodology for studying and screening GPCR-mediated signaling pathways.
基于β-抑制蛋白与配体激活的G蛋白偶联受体(GPCR)之间的相互作用这一常见的GPCR调节机制,描述了一种新型的基于细胞的功能分析方法,可直接以高通量形式监测GPCR激活。一种蛋白质-蛋白质相互作用技术,即InteraX商标系统,使用一对无活性的β-半乳糖苷酶(β-gal)缺失突变体作为感兴趣蛋白质靶标的融合伙伴。为了监测GPCR激活,生成了同时表达GPCR和β-抑制蛋白-β-gal融合蛋白的稳定细胞系。在配体刺激后,β-抑制蛋白与激活的GPCR结合,这种相互作用驱动β-gal突变体片段的功能互补。通过定量恢复的β-gal活性直接测量GPCR激活。作者用两种功能不同的GPCR验证了该分析系统:β2-肾上腺素能胺受体和CXCR2趋化因子结合受体。两种受体均以剂量依赖方式被已知激动剂和拮抗剂激活或阻断。用LOPAC商标化合物库筛选β2-肾上腺素能受体细胞系以鉴定激动剂和拮抗剂,验证了该系统在96孔微孔板形式下的高通量筛选性能。通过定量cAMP水平确认命中特异性。该分析系统也已在高密度(384孔)微孔板形式下进行。该系统为研究和筛选GPCR介导的信号通路提供了一种特异、灵敏且稳健的方法。