Structure-Guided Screening for Functionally Selective D2 Dopamine Receptor Ligands from a Virtual Chemical Library

G蛋白偶联受体 虚拟筛选 变构调节 多巴胺受体D2 连接器 对接(动物) 药物发现 功能选择性 受体 逮捕 化学 化学图书馆 计算生物学 多巴胺 生物 神经科学 生物化学 小分子 计算机科学 医学 护理部 操作系统
作者
Barbara Männel,Mariama Jaiteh,Alexey A. Zeifman,Alena Randáková,Dorothée Möller,Harald Hübner,Peter Gmeiner,Jens Carlsson
出处
期刊:ACS Chemical Biology [American Chemical Society]
卷期号:12 (10): 2652-2661 被引量:37
标识
DOI:10.1021/acschembio.7b00493
摘要

Functionally selective ligands stabilize conformations of G protein-coupled receptors (GPCRs) that induce a preference for signaling via a subset of the intracellular pathways activated by the endogenous agonists. The possibility to fine-tune the functional activity of a receptor provides opportunities to develop drugs that selectively signal via pathways associated with a therapeutic effect and avoid those causing side effects. Animal studies have indicated that ligands displaying functional selectivity at the D 2 dopamine receptor (D 2 R) could be safer and more efficacious drugs against neuropsychiatric diseases. In this work, computational design of functionally selective D 2 R ligands was explored using structure-based virtual screening. Molecular docking of known functionally selective ligands to a D 2 R homology model indicated that such compounds were anchored by interactions with the orthosteric site and extended into a common secondary pocket. A tailored virtual library with close to 13 000 compounds bearing 2,3-dichlorophenylpiperazine, a privileged orthosteric scaffold, connected to diverse chemical moieties via a linker was docked to the D 2 R model. Eighteen top-ranked compounds that occupied both the orthosteric and allosteric site were synthesized, leading to the discovery of 16 partial agonists. A majority of the ligands had comparable maximum effects in the G protein and β-arrestin recruitment assays, but a subset displayed preference for a single pathway. In particular, compound 4 stimulated β-arrestin recruitment (EC 50 = 320 nM, E max = 16%) but had no detectable G protein signaling. The use of structure-based screening and virtual libraries to discover GPCR ligands with tailored functional properties will be discussed.

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