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Simultaneous Ligand and Receptor Tracking through NMR Spectroscopy Enabled by Distinct 19F Labels

机译:通过不同的19F标签使能通过NMR光谱和受体跟踪的同时配体和受体跟踪

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摘要

To probe ligand-receptor binding at the atomic-level, a frequent approach involves multidimensional nuclear magnetic resonance (NMR) spectroscopy experiments relying on 13C- and/or 15N-enrichment alongside 1H. Alternatively, the lack of fluorine in biomolecules may be exploited through specific incorporation of 19F nuclei into a sample. The 19F nucleus is highly sensitive to environmental changes and allows for one-dimensional NMR spectroscopic study, with perturbation to chemical shift and spin dynamics diagnostic of structural change, ligand binding, and modified conformational sampling. This was applied to the apelinergic system, which comprises a rhodopsin-like G protein-coupled receptor (the apelin receptor (AR)/APJ) and two families of cognate ligands, the apelin and apela (ELABELA/toddler) peptides. Specifically, AR fragments consisting of either the N-terminal tail and first transmembrane (TM) α-helix (AR55) or the first three transmembrane α-helices (TM1-3) were prepared with biosynthetic fluorotryptophan incorporation. Interactions of each AR fragment with a high-affinity, 2,4,5-trifluorophenylalanine labeled apelin analogue were compared by 19F NMR. Distinct ranges of 19F chemical shifts for ligand and receptor provide unambiguous tracking of both species, with distinct binding behaviour observed for each AR fragment implying that AR55 is not sufficient to recapitulate the physiological binding event. Site-specific perturbation was also apparent for the apelin analogue as a function of substitution site, indicating an orientational binding preference. As a whole, this strategy of distinctive 19F labelling for ligand and receptor provides a relatively fast (i.e., employing 1D NMR experiments) and highly sensitive method to simultaneously and definitively track binding in both species.
机译:为了在原子水平处探测配体 - 受体结合,频繁的方法涉及多尺寸的核磁共振(NMR)光谱实验,依赖于1H的1H-和/或15N富集。或者,可以通过将19f核的特异性掺入样品中来利用生物分子中缺乏氟。 19F核对环境变化非常敏感,并且允许一维NMR光谱研究,扰动与化学换档和旋转动力学诊断结构变化,配体结合和改进的构象采样。将其应用于紫外线能系统,其包含罗多蛋白酶样G蛋白偶联受体(阿糖蛋白受体(Ar)/ APJ)和两个同源配体,阿贝林和阿皮特(Elabela / Toddler)肽的两个系列。具体地,由N-末端尾部和第一跨膜(TM)α-螺旋(AR55)或前三个跨膜α-螺旋(TM1-3)组成的AR片段用生物合成氟丙烯甘甘加掺入制备。通过19F NMR将每种Ar片段与高亲和力的相互作用,2,4,5-三氟苯基丙氨酸标记的apelin类似物进行比较。与配体和受体的不同的19F化学变换提供了两种物种的明确跟踪,对于每个AR片段观察到的不同结合行为意味着AR55不足以重新承载生理结合事件。特异性特异性扰动也显而易见为替代素类似物作为替代位点的函数,表明定向结合偏好。总的来说,这种独特的19F标记的配体和受体策略提供了相对较快的(即,采用1D NMR实验)和高敏感的方法,以同时和明确地追踪两种物种的结合。

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