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Molecular Determinants of Biased Agonism at the Dopamine D-2 Receptor

机译:多巴胺D-2受体上的偏见性激动的分子决定因素。

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The development of biased (functionally selective) ligands Provides a formidable challenge in medicinal chemistry. In an effort to learn to design functionally selective molecular tools for the highly therapeutically relevant dopamine D-2 receptor, we synthesized a collection of agonists based on structurally distinct head groups derived from canonical or atypical dopaminergic pharmacophores. The test compounds feature a long lipophilic appendage that was shown to mediate biased signaling. By employing functional assays and molecular dynamics simulations, we could show that atypical dopamine surrogates of type 1 and 2 promote biased signaling, while ligands built from classical dopaminergic head groups (type 3 and 4) typically elicit more balanced signaling profiles. Besides this, we found a strong influence of the stereochemistry of type 4 aminotetraline-derived agonists on functional selectivity at D-2 receptors. Whereas the (S)-enantiomer behaved as a full agonist, the biased ligand (R)-4 induced poor G protein coupling but substantial beta-arrestin recruitment.
机译:偏向(功能选择性)配体的发展为药物化学提供了巨大的挑战。为了努力学习为高度治疗相关的多巴胺D-2受体设计功能选择性分子工具,我们基于源自典型或非典型多巴胺能药效团的结构独特的头基合成了一系列激动剂。测试化合物具有长的亲脂性附属物,显示出介导偏向的信号传导。通过使用功能测定和分子动力学模拟,我们可以显示类型1和2的非典型多巴胺替代物可促进有偏差的信号传导,而由经典的多巴胺能头基(类型3和4)构建的配体通常会引起更平衡的信号传导。除此之外,我们还发现了4型氨基四氢萘类激动剂的立体化学对D-2受体功能选择性的强烈影响。 (S)-对映体表现为完全的激动剂,而偏向配体(R)-4诱导的G蛋白偶联不良,但大量募集β-arrestin。

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