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探索 sigma-1 受体线性配体的结构要求:实验和计算方法。

Exploring Structural Requirements for Sigma-1 Receptor Linear Ligands: Experimental and Computational Approaches.

机构信息

CHIBIOFARAM Department University of Messina, Viale F. d'Alcontres 31, I-98166 Messina, Italy.

Department of Drug and Health Sciences, University of Catania, Viale Andrea Doria 6, I-95125 Catania, Italy.

出版信息

J Chem Inf Model. 2024 Jul 22;64(14):5701-5711. doi: 10.1021/acs.jcim.4c00500. Epub 2024 Jun 28.

DOI:10.1021/acs.jcim.4c00500
PMID:38940754
Abstract

Sigma-1 receptor (S1R) is involved in a large array of biological functions due to its ability to interact with various proteins and ion channels. Crystal structures of human S1R revealed the trimeric organization for which each protomer comprises the ligand binding pocket. This study applied a multistep computational procedure to develop a pharmacophore model obtained from molecular dynamics simulations of available cocrystal structures of well-known S1R ligands. Apart from the well-established positive ionizable and hydrophobic features, the obtained model included an additional specific hydrophobic feature and different excluded volumes, thus increasing the selectivity of the model as well as a more detailed determination of the distance between two essential features. The obtained pharmacophore model passed the validation test by receiver operating characteristic (ROC) curve analysis of active and inactive S1R ligands. Finally, the pharmacophoric performance was experimentally investigated through the synthesis and binding assay of new 4-phenylpiperazine-based compounds. The most active new ligand 2-(3-methyl-1-piperidyl)-1-(4-phenylpiperazin-1-yl)ethanone () showed an S1R affinity close to the reference compound haloperidol ( values of 4.8 and 2.6 nM, respectively). The proposed pharmacophore model can represent a useful tool to design and discover new potent S1R ligands.

摘要

Sigma-1 受体 (S1R) 由于能够与各种蛋白质和离子通道相互作用,因此参与了大量的生物学功能。人源 S1R 的晶体结构揭示了三聚体的组织形式,每个原体都包含配体结合口袋。本研究应用了多步计算程序,从现有已知 S1R 配体的共晶结构的分子动力学模拟中开发出一个药效团模型。除了已建立的可离子化和亲脂性特征外,该模型还包括一个额外的特定疏水性特征和不同的排除体积,从而提高了模型的选择性以及对两个基本特征之间距离的更详细确定。所获得的药效团模型通过对活性和非活性 S1R 配体的接收者操作特征 (ROC) 曲线分析通过了验证测试。最后,通过新的基于 4-苯基哌嗪的化合物的合成和结合测定实验研究了药效团性能。最活跃的新配体 2-(3-甲基-1-哌啶基)-1-(4-苯基哌嗪-1-基)乙酮 () 表现出与参考化合物氟哌啶醇 ( 值分别为 4.8 和 2.6 nM) 接近的 S1R 亲和力。所提出的药效团模型可以代表设计和发现新的有效 S1R 配体的有用工具。

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