Coward P, Chan S D, Wada H G, Humphries G M, Conklin B R
Gladstone Institute of Neurological Disease, University of California, San Francisco, California 94141-9100, USA.
Anal Biochem. 1999 Jun 1;270(2):242-8. doi: 10.1006/abio.1999.4061.
G-protein-coupled receptors are a major target for potential therapeutics; yet, a large number of these receptors couple to the Gi pathway, generating signals that are difficult to detect. We have combined chimeric G proteins, automated sample handling, and simultaneous 96-well fluorometric imaging to develop a high-throughput assay system for Gi signaling. The chimeric G proteins alter receptor coupling so that signaling can occur through Gq and result in mobilization of intracellular calcium stores. An automated signaling assay device, the fluorometric imaging plate reader (FLIPR), can simultaneously measure this response in real time in 96-well microplates, allowing two people to process more than 10,000 points per day. We used the chimeric G protein/FLIPR system to characterize signaling by the Gi-coupled human opioid receptors. We show that the mu, delta, and kappa opioid receptors and the related nociceptin receptor, ORL1, each couple to Galphaqi5, Galphaqo5, and Galpha16 (Galphaqi5 and Galphaqo5 refer to Galphaq proteins containing the five carboxyl-terminal amino acids from Galphai and Galphao, respectively) and that different receptor/G protein combinations show different levels of maximal activation. We tested 31 opioid ligands for agonist activity at the opioid receptors (124 ligand-receptor combinations); all 31 activated at least one receptor type, and several activated multiple receptors with differing potencies. This high-throughput assay could be useful for dissecting the complex ligand-receptor relationships that are common in nature.
G蛋白偶联受体是潜在治疗药物的主要靶点;然而,这些受体中有大量与Gi信号通路偶联,产生难以检测的信号。我们将嵌合G蛋白、自动化样品处理和同步96孔荧光成像相结合,开发了一种用于Gi信号传导的高通量检测系统。嵌合G蛋白改变受体偶联,使信号能够通过Gq传导,导致细胞内钙库的动员。一种自动化信号检测设备——荧光成像微孔板读数仪(FLIPR),可以在96孔微孔板中实时同时测量这种反应,使两个人每天能够处理超过10000个数据点。我们使用嵌合G蛋白/FLIPR系统来表征与Gi偶联的人类阿片受体的信号传导。我们发现,μ、δ和κ阿片受体以及相关的孤啡肽受体ORL1,均与Gαqi5、Gαqo5和Gα16偶联(Gαqi5和Gαqo5分别指含有来自Gαi和Gαo的五个羧基末端氨基酸的Gαq蛋白),并且不同的受体/G蛋白组合显示出不同水平的最大激活。我们测试了31种阿片类配体在阿片受体上的激动剂活性(124种配体-受体组合);所有31种配体都激活了至少一种受体类型,并且有几种配体以不同的效力激活了多种受体。这种高通量检测方法对于剖析自然界中常见的复杂配体-受体关系可能是有用的。