受体-药物相互作用:研究g蛋白偶联受体激活的生化途径的铕就业。

Colabufo Nicola Antonio, Perrone Maria Grazia, Contino Marialessandra, Berardi Francesco, Perrone Roberto
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引用次数: 4

摘要

在药物化学领域,通常研究7-跨膜结构域g蛋白偶联受体(gpcr)激活的生化途径,以确定配体对gpcr的活性。研究最多的步骤是测量活化的gtp - α亚基和刺激的细胞内cAMP。目前,许多研究者使用[(35)S]GTPgammaS或[(3)H]cAMP作为探针来定义潜在gpcr药物的激动剂或拮抗剂活性。近年来,铕- gtp和铕- camp作为放射性化学物质的替代品,具有灵敏度高、易于自动化、易于合成、保质期长、可用于多标签实验等特点。本文主要从受体与药物相互作用的角度研究铕活化GPCR的生化途径。此外,还对镧系标记探针与相应的放射性标记化合物进行了比较研究。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Receptor-drug interaction: europium employment for studying the biochemical pathway of g-protein-coupled receptor activation.

Receptor-drug interaction: europium employment for studying the biochemical pathway of g-protein-coupled receptor activation.

Receptor-drug interaction: europium employment for studying the biochemical pathway of g-protein-coupled receptor activation.

Receptor-drug interaction: europium employment for studying the biochemical pathway of g-protein-coupled receptor activation.

In medicinal chemistry field, the biochemical pathways, involved in 7-transmembrane domains G-protein coupled receptors (GPCRs) activation, are commonly studied to establish the activity of ligands towards GPCRs. The most studied steps are the measurement of activated GTP-alpha subunit and stimulated intracellular cAMP. At the present, many researchers defined agonist or antagonist activity of potential GPCRs drugs employing [(35)S]GTPgammaS or [(3)H]cAMP as probes. Recently, the corresponding lanthanide labels Eu-GTP and Eu-cAMP as alternative to radiochemicals have been developed because they are highly sensitive, easy to automate, easily synthesized, they display a much longer shelf-life and they can be used in multilabel experiments. In the present review, the receptor-drug interaction by europium employment for studying the biochemical pathway of GPCR activation has been focused. Moreover, comparative studies between lanthanide label probes and the corresponding radiolabeled compounds have been carried out.

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