Institute of Pharmacy, Freie Universität Berlin, Königin-Luise-Strasse 2-4, 14195 Berlin, Germany.
Int J Mol Sci. 2020 Dec 20;21(24):9728. doi: 10.3390/ijms21249728.
G protein-coupled receptors are linked to various intracellular transducers, each pathway associated with different physiological effects. Biased ligands, capable of activating one pathway over another, are gaining attention for their therapeutic potential, as they could selectively activate beneficial pathways whilst avoiding those responsible for adverse effects. We performed molecular dynamics simulations with known β-arrestin-biased ligands like lysergic acid diethylamide and ergotamine in complex with the 5-HT receptor and discovered that the extent of ligand bias is directly connected with the degree of closure of the extracellular loop region. Given a loose allosteric coupling of extracellular and intracellular receptor regions, we delineate a concept for biased signaling at serotonin receptors, by which conformational interference with binding pocket closure restricts the signaling repertoire of the receptor. Molecular docking studies of biased ligands gathered from the BiasDB demonstrate that larger ligands only show plausible docking poses in the ergotamine-bound structure, highlighting the conformational constraints associated with bias. This emphasizes the importance of selecting the appropriate receptor conformation on which to base virtual screening workflows in structure-based drug design of biased ligands. As this mechanism of ligand bias has also been observed for muscarinic receptors, our studies provide a general mechanism of signaling bias transferable between aminergic receptors.
G 蛋白偶联受体与各种细胞内转导物相连,每条途径都与不同的生理效应相关。具有偏向配体激活能力的药物,能够选择性地激活有益途径,同时避免那些引起不良反应的途径,因此引起了人们的关注。我们使用已知的β-arrestin 偏向配体(如麦角酸二乙酰胺和麦角胺)与 5-HT 受体复合物进行分子动力学模拟,发现配体偏向程度与细胞外环区域的闭合程度直接相关。鉴于细胞外和细胞内受体区域的变构偶联较为松散,我们提出了一种在 5-HT 受体上产生偏向信号的概念,即通过与结合口袋闭合的构象干扰来限制受体的信号转导谱。从 BiasDB 中收集的偏向配体的分子对接研究表明,较大的配体仅在麦角胺结合结构中显示出合理的对接构象,突出了与偏向相关的构象限制。这强调了在基于结构的偏向配体药物设计中,选择适当的受体构象进行虚拟筛选工作流的重要性。由于这种配体偏向机制也在毒蕈碱受体中观察到,我们的研究为氨基受体之间的信号偏向转移提供了一种通用机制。