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Ligand-Directed Functional Selectivity at the Mu Opioid Receptor Revealed by Label-Free Integrative Pharmacology On-Target

机译:无标记的综合药理学在目标揭示了Mu阿片受体上的配体定向功能选择性。

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摘要

Development of new opioid drugs that provide analgesia without producing dependence is important for pain treatment. Opioid agonist drugs exert their analgesia effects primarily by acting at the mu opioid receptor (MOR) sites. High-resolution differentiation of opioid ligands is crucial for the development of new lead drug candidates with better tolerance profiles. Here, we use a label-free integrative pharmacology on-target (iPOT) approach to characterize the functional selectivity of a library of known opioid ligands for the MOR. This approach is based on the ability to detect dynamic mass redistribution (DMR) arising from the activation of the MOR in living cells. DMR assays were performed in HEK-MOR cells with and without preconditioning with probe molecules using label-free resonant waveguide grating biosensors, wherein the probe molecules were used to modify the activity of specific signaling proteins downstream the MOR. DMR signals obtained were then translated into high resolution heat maps using similarity analysis based on a numerical matrix of DMR parameters. Our data indicate that the iPOT approach clearly differentiates functional selectivity for distinct MOR signaling pathways among different opioid ligands, thus opening new avenues to discover and quantify the functional selectivity of currently used and novel opioid receptor drugs.
机译:开发新的提供镇痛作用而不产生依赖性的阿片类药物对于疼痛治疗很重要。阿片类激动剂药物主要通过作用于阿片类阿片受体(MOR)位点来发挥镇痛作用。阿片类药物配体的高分辨率分化对于开发具有更好耐受性的新型先导药物至关重要。在这里,我们使用无标记靶标综合药理学(iPOT)方法来表征已知阿片类药物配体对MOR的功能选择性。该方法基于检测由活细胞中MOR激活引起的动态质量再分布(DMR)的能力。使用无标记的共振波导光栅生物传感器在带有或不带有探针分子的预处理下,在HEK-MOR细胞中进行DMR分析,其中探针分子用于修饰MOR下游特定信号蛋白的活性。然后,基于DMR参数的数值矩阵,使用相似度分析将获得的DMR信号转换为高分辨率热图。我们的数据表明,iPOT方法清楚地区分了不同阿片样物质配体中不同MOR信号通路的功能选择性,从而开辟了新途径来发现和量化目前使用的新型阿片受体药物的功能选择性。

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