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首页> 外文期刊>Frontiers in Chemistry >Docking, Interaction Fingerprint, and Three-Dimensional Quantitative Structure–Activity Relationship (3D-QSAR) of Sigma1 Receptor Ligands, Analogs of the Neuroprotective Agent RC-33
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Docking, Interaction Fingerprint, and Three-Dimensional Quantitative Structure–Activity Relationship (3D-QSAR) of Sigma1 Receptor Ligands, Analogs of the Neuroprotective Agent RC-33

机译:神经保护剂RC-33的类似物Sigma1受体配体的对接,相互作用指纹和三维定量构效关系(3D-QSAR)

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The human Sigma1 receptor (S1R), which has been identified as a target with an important role in neuropsychological disorders, was first crystallized three years ago. Since S1R structure has no relation with another previous crystallized structures, the presence of the new crystal is an important hallmark for the design of agonists and antagonists against this important target. Some years ago, our group identified RC-33, a potent and selective S1R agonist, endowed with neuroprotective properties. In this work, drawing on new structural information, we studied the interactions of RC-33 and its analogs with the S1R binding site by using computational methods such as docking, interaction fingerprints, and receptor-guided alignment three dimensional quantitative structure–activity relationship (3D-QSAR). We found that RC-33 and its analogs adopted similar orientations within S1R binding site, with high similitude with orientations of the crystallized ligands; such information was used for identifying the residues involved in chemical interactions with ligands. Furthermore, the structure-activity relationship of the studied ligands was adequately described considering classical QSAR tests. All relevant aspects of the interactions between the studied compounds and S1R were covered here, through descriptions of orientations, binding interactions, and features that influence differential affinities. In this sense, the present results could be useful in the future design of novel S1R modulators.
机译:人Sigma1受体(S1R)已被确定为在神经心理疾病中具有重要作用的靶标,三年前首次被结晶。由于S1R结构与先前的其他结晶结构无关,因此新晶体的存在是针对该重要靶标设计激动剂和拮抗剂的重要标志。几年前,我们小组确定了RC-33,它是一种有效的,选择性的S1R激动剂,具有神经保护特性。在这项工作中,我们利用新的结构信息,通过使用对接,相互作用指纹和受体指导的比对等三维定量结构-活性关系等计算方法,研究了RC-33及其类似物与S1R结合位点的相互作用。 3D-QSAR)。我们发现RC-33及其类似物在S1R结合位点内采用相似的取向,与结晶配体的取向高度相似。这些信息用于鉴定与配体化学相互作用中涉及的残基。此外,考虑到经典的QSAR测试,已充分描述了所研究配体的构效关系。通过方向,结合相互作用和影响差异亲和力的特征的描述,涵盖了所研究化合物与S1R之间相互作用的所有相关方面。从这个意义上讲,当前的结果可能在新型S1R调制器的未来设计中有用。

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