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Designing Functionally Selective Noncatechol Dopamine D1 Receptor Agonists with Potent In Vivo Antiparkinsonian Activity

机译:设计具有功能性体内抗帕金森病活性的功能选择性非儿茶酚多巴胺D1受体激动剂

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摘要

Dopamine receptors are important G protein-coupled receptors (GPCRs) with therapeutic opportunities for treating Parkinson’s Disease (PD) motor and cognitive deficits. Biased D1 dopamine ligands that differentially activate G protein over β-arrestin recruitment pathways are valuable chemical tools for dissecting positive versus negative effects in drugs for PD. Here, we reveal an iterative approach toward modification of a D1-selective noncatechol scaffold critical for G protein-biased agonism. This approach provided enhanced understanding of the structural components critical for activity and signaling bias and led to the discovery of several novel compounds with useful pharmacological properties, including three highly GS-biased partial agonists. Administration of a potent, balanced, and brain-penetrant lead compound from this series results in robust antiparkinsonian effects in a rodent model of PD. This study suggests that the noncatechol ligands developed through this approach are valuable tools for probing D1 receptor signaling biology and biased agonism in models of neurologic disease.
机译:多巴胺受体是重要的G蛋白偶联受体(GPCR),具有治疗帕金森氏病(PD)运动和认知缺陷的治疗机会。偏向于在β-arrestin募集途径上激活G蛋白的D1多巴胺配体是用于剖析PD药物中正反作用的重要化学工具。在这里,我们揭示了一种针对D1选择性非儿茶酚骨架对G蛋白偏向激动至关重要的修饰的迭代方法。这种方法提供了对活性和信号偏向至关重要的结构成分的加深了解,并导致发现了几种具有有用药理性质的新型化合物,包括三种高度GS偏向的部分激动剂。在该系列的PD啮齿动物模型中,服用有效,平衡且能渗透脑部的先导化合物可产生强大的抗帕金森效应。这项研究表明,通过这种方法开发的非儿茶酚配体是探索D1受体信号传导生物学和神经系统疾病模型中的激动性的有价值的工具。

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