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A Hybrid Structural Approach to Analyze Ligand Binding by the Serotonin Type 4 Receptor (5-HT4)

机译:一种混合结构方法来分析血清素4型受体(5-HT4)的配体结合

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摘要

Hybrid structural methods have been used in recent years to understand protein-protein or protein-ligand interactions where high resolution crystallography or NMR data on the protein of interest has been limited. For G protein-coupled receptors (GPCRs), high resolution structures of native structural forms other than rhodopsin have not yet been achieved; gaps in our knowledge have been filled by creative crystallography studies that have developed stable forms of receptors by multiple means. The neurotransmitter serotonin (5-hydroxytryptamine) is a key GPCR-based signaling molecule affecting many physiological manifestations in humans ranging from mood and anxiety to bowel function. However, a high resolution structure of any of the serotonin receptors has not yet been solved. Here, we used structural mass spectrometry along with theoretical computations, modeling, and other biochemical methods to develop a structured model for human serotonin receptor subtype 4(b) in the presence and absence of its antagonist . Our data confirmed the overall structure predicted by the model and revealed a highly conserved motif in the ligand-binding pocket of serotonin receptors as an important participant in ligand binding. In addition, identification of waters in the transmembrane region provided clues as to likely paths mediating intramolecular signaling. Overall, this study reveals the potential of hybrid structural methods, including mass spectrometry, to probe physiological and functional GPCR-ligand interactions with purified native protein.
机译:近年来,已经使用混合结构方法来理解蛋白质-蛋白质或蛋白质-配体之间的相互作用,其中有关目标蛋白质的高分辨率晶体学或NMR数据受到限制。对于G蛋白偶联受体(GPCR),尚未获得除视紫红质以外的天然结构形式的高分辨率结构;创造性的晶体学研究填补了我们知识上的空白,该研究通过多种手段开发出了稳定的受体形式。神经递质5-羟色胺(5-羟色胺)是一种关键的基于GPCR的信号分子,影响人类从情绪,焦虑到肠功能的许多生理表现。然而,尚未解决任何5-羟色胺受体的高分辨率结构。在这里,我们使用结构质谱分析以及理论计算,建模和其他生化方法来开发存在或不存在其拮抗剂的人血清素受体亚型4(b)的结构化模型。我们的数据证实了模型预测的整体结构,并揭示了5-羟色胺受体配体结合口袋中高度保守的基序,是配体结合的重要参与者。另外,跨膜区域中水的鉴定提供了有关介导分子内信号传导的可能途径的线索。总的来说,这项研究揭示了混合结构方法(包括质谱)在探测生理和功能性GPCR-配体与纯化天然蛋白相互作用方面的潜力。

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