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首页> 外文期刊>Analytical chemistry >Probing Biochemical Mechanisms of Action of Muscarinic M3 Receptor Antagonists with Label-Free Whole Cell Assays
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Probing Biochemical Mechanisms of Action of Muscarinic M3 Receptor Antagonists with Label-Free Whole Cell Assays

机译:用无标记全细胞检测探究毒蕈碱型M3受体拮抗剂的生化机制

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摘要

Binding kinetics of drugs is increasingly recognized to be important for their in vivo efficacy and safety profiles. However, little is known about the effect of drug binding kinetics on receptor signaling in native cells. Here we used label-free whole cell dynamic mass redistribution (DMR) assays under persistent and duration-controlled stimulation conditions to investigate the influence of the binding kinetics of four antagonists on the signaling of endogenous muscarinic M3 receptor in native HT-29 cells. Results showed that DMR assays under different conditions differentiated the biochemical mechanisms of action of distinct M3 antagonists. When co-stimulated with acetylcholine, tiotropium, a relatively slow binding antagonist, was found to selectively block the late signaling of the receptor, suggesting that acetylcholine attains its binding equilibrium faster than tiotropium does, thereby still being able to initiate its rapid response until the antagonist draws up and fully blocks the signaling. Furthermore, DMR assays under microfluidics allowed estimation of the residence times of these antagonists acting at the receptor in native cells, which were found to be the determining factor for the blockage efficiency of M3 receptor signaling under duration-controlled conditions. This study demonstrates that DMR assays can be used to elucidate the functional consequence of kinetics-driven antagonist occupancy in native cells.
机译:人们日益认识到,药物的结合动力学对其体内功效和安全性至关重要。然而,关于药物结合动力学对天然细胞中受体信号传导的影响知之甚少。在这里,我们在持续和持续时间控制的刺激条件下使用无标记全细胞动态质量再分配(DMR)分析来研究四种拮抗剂的结合动力学对天然HT-29细胞中内源性毒蕈碱M3受体信号传导的影响。结果表明,在不同条件下的DMR测定区分了不同M3拮抗剂的生化作用机理。当与乙酰胆碱共同刺激时,噻托溴铵(一种相对较慢的结合拮抗剂)被发现选择性地阻断受体的晚期信号传导,这表明乙酰胆碱比噻托溴铵更快地达到其结合平衡,从而仍然能够启动其快速反应直至拮抗剂起草并完全阻断信号传导。此外,在微流控下进行DMR分析可以估算这些拮抗剂在天然细胞中作用于受体的停留时间,这是在持续时间受控的条件下M3受体信号传导阻滞效率的决定因素。这项研究表明DMR分析可用于阐明动力学驱动的拮抗剂在天然细胞中占据的功能性结果。

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