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Allosteric Modulators of Serotonin Receptors: A Medicinal Chemistry Survey

机译:血清素受体的变构调节剂:药物化学调查

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摘要

Serotonin (5-hydroxytryptamine, 5-HT) is a neurotransmitter regulating numerous physiological functions, and its dysregulation is a crucial component of the pathological processes of schizophrenia, depression, migraines, and obesity. 5-HT interacts with 14 different receptors, of which 5-HT1A-1FRs, 5-HT2A-CRs, and 5-HT4-7Rs are G protein-coupled receptors (GPCRs), while 5-HT3R is a ligand-gated ion channel. Over the years, selective orthosteric ligands have been identified for almost all serotonin receptors, yielding several clinically relevant drugs. However, the high degree of homology between 5-HTRs and other GPCRs means that orthosteric ligands can have severe side effects. Thus, there has recently been increased interest in developing safer ligands of GPCRs, which bind to less conserved, more specific sites, distinct from that of the receptor’s natural ligand. The present review describes the identification of allosteric ligands of serotonin receptors, which are largely natural compounds (oleamide, cannabidiol, THC, and aporphine alkaloids), complemented by synthetic modulators developed in large part for the 5-HT2C receptor. The latter are positive allosteric modulators sought after for their potential as drugs preferable over the orthosteric agonists as antiobesity agents for their potentially safer profile. When available, details on the interactions between the ligand and allosteric binding site will be provided. An outlook on future research in the field will also be provided.
机译:血清素 (5-羟色胺,5-HT) 是一种调节多种生理功能的神经递质,其失调是精神分裂症、抑郁症、偏头痛和肥胖症病理过程的重要组成部分。5-HT 与 14 种不同的受体相互作用,其中 5-HT1A-1FRs、5-HT2A-CRs 和 5-HT4-7Rs 是 G 蛋白偶联受体 (GPCRs),而 5-HT3R 是配体门控离子通道。多年来,已经确定了几乎所有 5-羟色胺受体的选择性正构配体,产生了几种临床相关的药物。然而,5-HTR 和其他 GPCR 之间的高度同源性意味着正构配体可能具有严重的副作用。因此,最近人们对开发更安全的 GPCR 配体的兴趣越来越大,这些配体与不太保守、更特异性的位点结合,与受体的天然配体不同。本综述描述了血清素受体变构配体的鉴定,这些配体主要是天然化合物(油酰胺、大麻二酚、THC 和哌啡生物碱),并辅以在很大程度上为 5-HT2C 受体开发的合成调节剂。后者是正变构调节剂,因其作为药物的潜力而受到追捧,而不是正构激动剂作为抗肥胖剂,因为它们可能更安全。如果可用,将提供有关配体和变构结合位点之间相互作用的详细信息。还将提供对该领域未来研究的展望。

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