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Defining Structure−Functional Selectivity Relationships (SFSR) for a Class of Non-Catechol Dopamine D1 Receptor Agonists

机译:定义一类非儿茶酚多巴胺D1受体激动剂的结构-功能选择性关系(SFSR)

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摘要

G protein-coupled receptors (GPCRs) are capable of downstream signaling through distinct noncanonical pathways such as β-arrestins in addition to the canonical G protein-dependent pathways. GPCR ligands that differentially activate the downstream signaling pathways are termed functionally selective or biased ligands. A class of novel non-catechol G protein-biased agonists of the dopamine D1 receptor (D1R) was recently disclosed. We conducted the first comprehensive structure−functional selectivity relationship study measuring GS and β-arrestin2 recruitment activities focused on four regions of this scaffold, resulting in over 50 analogs with diverse functional selectivity profiles. Some compounds became potent full agonists of β-arrestin2 recruitment, while others displayed enhanced GS bias compared to the starting compound. Pharmacokinetic testing of an analog with an altered functional selectivity profile demonstrated excellent blood−brain barrier penetration. This study provides novel tools for studying ligand bias at D1R and paves the way for developing the next generation of biased D1R ligands.
机译:G蛋白偶联受体(GPCR)除了通过G蛋白依赖性经典途径外,还能够通过不同的非经典途径(例如β-arrestin)进行下游信号传导。差异激活下游信号传导途径的GPCR配体称为功能选择性或偏向配体。最近公开了一类多巴胺D1受体(D1R)的新型非儿茶酚G蛋白偏向的激动剂。我们进行了第一个全面的结构-功能选择性关系研究,测量了该支架的四个区域的GS和β-arrestin2募集活动,结果得到了50多个具有不同功能选择性谱的类似物。与起始化合物相比,某些化合物成为β-arrestin2募集的有效全效激动剂,而其他化合物则显示出更高的GS偏倚。具有改变的功能选择性特征的类似物的药代动力学测试表明,血脑屏障渗透性极好。这项研究为研究D1R的配体偏倚提供了新颖的工具,并为开发下一代偏向的D1R配体铺平了道路。

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