Waller Anna, Simons Peter C, Biggs Sean M, Edwards Bruce S, Prossnitz Eric R, Sklar Larry A
Department of Pathology and Cancer Center, University of New Mexico Health Science Center, Albuquerque, NM 87131, USA.
Trends Pharmacol Sci. 2004 Dec;25(12):663-9. doi: 10.1016/j.tips.2004.10.009.
Flow cytometers are well known for their ability to analyze and sort cells at high rates based on physiological responses and expression of protein markers. The potential for flow cytometry in G-protein-coupled receptor (GPCR) research, however, is less well appreciated. Potential applications include: (i) the homogenous discrimination of free and bound ligands or proteins in both cellular and microsphere-based assays; and (ii) multiplexed ('suspension array') analysis of cell responses and protein-protein interactions. Innovative sample-handling systems also provide sub-second resolution of interaction kinetics and 1 second per well throughput of microliter-sized samples from multiwell plates. Flow cytometric methods using microspheres for analysis of GPCRs that interact with intracellular and extracellular binding partners such as ligands, G proteins and kinases have been established. These analyses can produce quantitative pharmacological data analogous to radioligand assays, and, in some cases, the probes can be integrated into the assembly as fluorescent fusion proteins.
流式细胞仪以其能够基于生理反应和蛋白质标志物的表达高速分析和分选细胞而闻名。然而,流式细胞术在G蛋白偶联受体(GPCR)研究中的潜力却鲜为人知。潜在应用包括:(i)在基于细胞和微球的检测中对游离和结合的配体或蛋白质进行同质区分;以及(ii)对细胞反应和蛋白质-蛋白质相互作用进行多重(“悬浮阵列”)分析。创新的样品处理系统还提供了亚秒级的相互作用动力学分辨率,以及每秒从微孔板中处理微升大小样品的单孔通量。已经建立了使用微球的流式细胞术方法来分析与细胞内和细胞外结合伙伴(如配体、G蛋白和激酶)相互作用的GPCR。这些分析可以产生类似于放射性配体检测的定量药理学数据,并且在某些情况下,探针可以作为荧光融合蛋白整合到组件中。