Weber Michael, Ferrer Marc, Zheng Wei, Inglese James, Strulovici Berta, Kunapuli Priya
Department of Automated Biotechnology, Merck Research Laboratories, North Wales, PA 19454, USA.
Assay Drug Dev Technol. 2004 Feb;2(1):39-49. doi: 10.1089/154065804322966306.
Guanosine triphosphate binding protein (G protein)-coupled receptors (GPCRs) are a large class of pharmaceutical drug targets. With the increasing popularity of functional assays for high throughput screening, there arises an increasing need for robust second messenger assays that reflect GPCR activation and are readily amenable for miniaturization. GPCRs that upon agonist stimulation modulate adenylyl cyclase activity, and, consequently, cellular cyclic adenosine monophosphate (cAMP) levels, via the G protein Gs or Gi, form a subset of therapeutic targets. While there are several cAMP assays currently available, most are not scalable for miniaturization into the 1536-well format employed for automated high throughput screening of large chemical libraries. Here, we describe a cAMP assay based on the enzyme fragmentation complementation (EFC) of beta-galactosidase. In this assay, recombinant cells expressing Gs- or Gi-coupled receptors exhibit robust and reproducible pharmacology for agonists and antagonists, as measured by cAMP levels. Furthermore, the EFC cAMP assay offers sufficient sensitivity to be used with cells expressing endogenous GPCRs. We demonstrate the miniaturization of this assay into a 1536-well format with comparable sensitivity and plate statistics to those of the 384-well assay for both Gs- and Gi-coupled receptors, and its suitability for miniaturized high throughput screening.
鸟苷三磷酸结合蛋白(G蛋白)偶联受体(GPCRs)是一大类药物靶点。随着用于高通量筛选的功能测定法越来越普及,对能够反映GPCR激活且易于小型化的可靠第二信使测定法的需求也日益增加。通过G蛋白Gs或Gi,在激动剂刺激下调节腺苷酸环化酶活性,进而调节细胞环磷酸腺苷(cAMP)水平的GPCRs构成了一类治疗靶点。虽然目前有几种cAMP测定法,但大多数无法扩展以小型化为用于大型化学文库自动高通量筛选的1536孔板形式。在此,我们描述了一种基于β-半乳糖苷酶酶片段互补(EFC)的cAMP测定法。在该测定法中,表达与Gs或Gi偶联受体的重组细胞,通过cAMP水平测定,对激动剂和拮抗剂表现出强大且可重复的药理学特性。此外,EFC cAMP测定法具有足够的灵敏度,可用于表达内源性GPCRs的细胞。我们证明了该测定法可小型化为1536孔板形式,对于与Gs和Gi偶联的受体,其灵敏度和板统计数据与384孔测定法相当,且适用于小型化高通量筛选。