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基于结构的选择性或双功能孤啡肽(NOP)受体激动剂设计中的 SAR 研究。

Structure-Based SAR in the Design of Selective or Bifunctional Nociceptin (NOP) Receptor Agonists.

机构信息

Astraea Therapeutics, LLC, 320 Logue Avenue, Mountain View, California, 94043, USA.

出版信息

AAPS J. 2021 May 11;23(3):68. doi: 10.1208/s12248-021-00589-7.

Abstract

The nociceptin opioid receptor (NOP), the fourth member of the opioid receptor family, and its endogenous peptide ligand, nociceptin or orphanin FQ (N/OFQ), play a vital role in several central nervous system pathways regulating pain, reward, feeding, anxiety, motor control and learning/memory. Both selective NOP agonists as well as bifunctional agonists at the NOP and mu opioid receptor (MOP) have potential therapeutic applications in CNS disorders related to these processes. Using Surflex-Dock protocols, we conducted a computational structure-activity study of four scaffold classes of NOP ligands with varying NOP-MOP selectivity. By docking these compounds into the orthosteric binding sites within an active-state NOP homology model, and an active-state MOP crystal structure, the goal of this study was to use a structure-based drug design approach to modulate NOP affinity and NOP vs. MOP selectivity. We first docked four parent compounds (no side chain) to determine their binding interactions within the NOP and MOP binding pockets. Various polar sidechains were added to the heterocyclic A-pharmacophore to modulate NOP ligand affinity. The substitutions mainly contained a 1-2 carbon chain with a polar substituent such as an amine, alcohol, sulfamide, or guanidine. The SAR analysis is focused on the impact of structural changes in the sidechain, such as chain length, hydrogen bonding capability, and basic vs neutral functional groups on binding affinity and selectivity at both NOP and MOP receptors. This study highlights structural modifications that can be leveraged to rationally design both selective NOP and bifunctional NOP-MOP agonists with different ratios of functional efficacy.

摘要

孤啡肽受体(NOP)是阿片受体家族的第四个成员,其内源性肽配体孤啡肽或孤啡肽 FQ(N/OFQ)在调节疼痛、奖赏、摄食、焦虑、运动控制和学习/记忆的几个中枢神经系统途径中发挥着重要作用。选择性 NOP 激动剂以及 NOP 和μ阿片受体(MOP)的双功能激动剂都有可能在与这些过程相关的中枢神经系统疾病中得到应用。本研究使用 Surflex-Dock 方案,对具有不同 NOP-MOP 选择性的四种 NOP 配体骨架类别的化合物进行了计算结构-活性研究。通过将这些化合物对接进入 NOP 同源模型的正构结合位点和 MOP 晶体结构的活性状态,本研究的目的是使用基于结构的药物设计方法来调节 NOP 的亲和力和 NOP 与 MOP 的选择性。我们首先对接了四个母体化合物(无侧链),以确定它们在 NOP 和 MOP 结合口袋中的结合相互作用。在杂环 A-药效团上添加了各种极性侧链,以调节 NOP 配体的亲和力。取代基主要包含一个 1-2 个碳原子的链,带有极性取代基,如胺、醇、磺胺或胍。SAR 分析的重点是侧链结构变化对 NOP 和 MOP 受体结合亲和力和选择性的影响,如链长、氢键能力以及碱性与中性官能团。本研究强调了可以利用结构修饰来合理设计具有不同功能效力比的选择性 NOP 和双功能 NOP-MOP 激动剂。

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