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发现一种兴奋剂衍生物在前庭5-羟色胺受体位点的隐秘口袋开口和结合情况。

Discovering cryptic pocket opening and binding of a stimulant derivative in a vestibular site of the 5-HT receptor.

作者信息

Haloi Nandan, Karlsson Emelia, Delarue Marc, Howard Rebecca J, Lindahl Erik

机构信息

SciLifeLab, Department of Applied Physics, KTH Royal Institute of Technology, Tomtebodävagen 23, Solna, 17165 Stockholm, Sweden.

SciLifeLab, Department of Biochemistry and Biophysics, Stockholm University, Tomtebodavägen 23, Solna, 17165 Stockholm, Sweden.

出版信息

Sci Adv. 2025 Apr 11;11(15):eadr0797. doi: 10.1126/sciadv.adr0797.

Abstract

A diverse set of modulators, including stimulants and anesthetics, regulates ion channel function in our nervous system. However, structures of ligand-bound complexes can be difficult to capture by experimental methods, particularly when binding is dynamic. Here, we used computational methods and electrophysiology to identify a possible bound state of a modulatory stimulant derivative in a cryptic vestibular pocket of a mammalian serotonin-3 receptor. We first applied a molecular dynamics simulation-based goal-oriented adaptive sampling method to identify possible open-pocket conformations, followed by Boltzmann docking that combines traditional docking with Markov state modeling. Clustering and analysis of stability and accessibility of docked poses supported a preferred binding site; we further validated this site by mutagenesis and electrophysiology, suggesting a mechanism of potentiation by stabilizing intersubunit contacts. Given the pharmaceutical relevance of serotonin-3 receptors in emesis, psychiatric, and gastrointestinal diseases, characterizing relatively unexplored modulatory sites such as these could open valuable avenues to understanding conformational cycling and designing state-dependent drugs.

摘要

包括兴奋剂和麻醉剂在内的多种调节剂可调节我们神经系统中的离子通道功能。然而,配体结合复合物的结构可能难以通过实验方法捕获,尤其是当结合是动态的时候。在这里,我们使用计算方法和电生理学来确定一种调节性兴奋剂衍生物在哺乳动物5-羟色胺3型受体的一个隐蔽前庭口袋中的可能结合状态。我们首先应用基于分子动力学模拟的目标导向自适应采样方法来识别可能的开放口袋构象,然后进行结合传统对接与马尔可夫状态建模的玻尔兹曼对接。对接姿势的聚类以及稳定性和可及性分析支持了一个优先结合位点;我们通过诱变和电生理学进一步验证了该位点,提示了通过稳定亚基间接触实现增强作用的机制。鉴于5-羟色胺3型受体在呕吐、精神疾病和胃肠道疾病中的药物相关性,表征像这样相对未被探索的调节位点可能为理解构象循环和设计状态依赖性药物开辟有价值的途径。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a4b9/11988449/5578421192ed/sciadv.adr0797-f1.jpg

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