稳定的camp反应性荧光素酶报告细胞系表达的人多巴胺D1和D5受体的功能检测。

A Himmler, C Stratowa, A P Czernilofsky
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引用次数: 109

摘要

已知大量的g蛋白偶联受体可调节腺苷酸环化酶活性。为了找到调节特定受体亚型活性的新化合物,我们开发了一种细胞筛选系统,可以测量药物作用于受体的生物活性,而不仅仅是它们的结合特性。受体偶联到cAMP信号转导通路的活性是通过一个报告基因的转录激活来测量的。用含有萤火虫荧光素酶基因的报告质粒在多个cAMP应答元件(CRE)的转录调控下稳定转化了中国仓鼠卵巢细胞系。该CRE报告细胞系在用福斯克林刺激腺苷酸环化酶时显示出20至30倍的荧光素酶活性诱导,但对多巴胺激动剂没有反应。通过分别转染人多巴胺D1和D5受体基因的报告细胞系,建立稳定的试验细胞系。用多巴胺受体激动剂和拮抗剂处理这些测试细胞系,以剂量依赖的方式调节荧光素酶的表达。多巴胺受体激动剂和拮抗剂的效力等级与从结合研究中获得的报告数据一致。非同位素分析可以在微量滴度板格式中进行,并且比通过直接cAMP测量来测定腺苷酸环化酶活性的工作量要少得多。该技术还可用于发现新类别的化合物,例如变构效应剂或非竞争配体。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Functional testing of human dopamine D1 and D5 receptors expressed in stable cAMP-responsive luciferase reporter cell lines.

A large number of G-protein coupled receptors are known to modulate adenylyl cyclase activity. In order to find new compounds modulating the activity of specific receptor subtypes we developed a cellular screening system that measures the biological activity of drugs acting on receptors rather than merely their binding characteristics. The activity of the receptor coupling to the cAMP signal transduction pathway was measured via transcriptional activation of a reporter gene. A chinese hamster ovary cell line was stably transformed with a reporter plasmid containing the firefly luciferase gene under the transcriptional control of multiple cAMP responsive elements (CRE). This CRE reporter cell line exhibited 20 to 30-fold induction of luciferase activity upon stimulation of adenylyl cyclase with forskolin, but did not respond to dopamine agonists. Stable test cell lines were developed by transfecting reporter cell lines with human dopamine D1 and D5 receptor genes, respectively. Treatment of these test cell lines with dopamine receptor agonists and antagonists modulated the luciferase expression in a dose-dependent manner. The rank of potency of dopamine receptor agonists and antagonists was in agreement with reported data obtained from binding studies. The non-isotopic assay can be performed in microtiter plate format and is far less work intensive than the determination of adenylyl cyclase activity by direct cAMP measurement. This technology could also be utilized for discovery of new classes of compounds, e.g. allosteric effectors or non competitive ligands.

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