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首页> 外文期刊>ACS Omega >Understanding the Contribution of Individual Amino Acid Residues in the Binding of Psychoactive Substances to Monoamine Transporters
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Understanding the Contribution of Individual Amino Acid Residues in the Binding of Psychoactive Substances to Monoamine Transporters

机译:了解单个氨基酸残基在精神活性物质与单胺转运蛋白结合中的贡献

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The development of point-of-care detection methodologies for biologically relevant analytes that can facilitate rapid and appropriate treatment is at the forefront of current research efforts and interests. Among the various approaches, those exploiting host–guest chemistries where the optoelectronic signals of the chemical sensor can be modulated upon interaction with the target analyte are of particular interest. In aiding their rational development, judicious selection of peripheral functional groups anchored to core motifs with desired properties is critical. Herein, we report an in-depth investigation of the binding of three psychoactive substances, MDAI, mexedrone, and phenibut, to receptors of the monoamine transporters for dopamine, norepinephrine, and serotonin, particularly focusing on the role of individual amino acid residues. We first evaluated the conformational flexibility of the ligands by comparing their experimentally determined crystal structure geometries to those optimized by means of quantum as well as molecular mechanics, observing significant changes in the case of phenibut. Molecular docking studies were employed to identify preferential binding sites by means of calculated docking scores. In all cases, irrespective of the monoamine transporter, psychoactive substances exhibited preferred interaction with the S1 or central site of the proteins, in line with previous studies. However, we observed that experimental trends for their relative potency on the three transporters were only reproduced in the case of mexedrone. Subsequently, to further understand these findings and to pave the way for the rational development of superior chemical sensors for these substances, we computed the individual contributions of each nearest neighbor amino acid residue to the binding to the target analytes. Interestingly, these results are now in agreement with those experimental potency trends. In addition, these observations were in all cases associated with key intermolecular interactions with neighboring residues, such as tyrosine and aspartic acid, in the binding of the ligands to the monoamine transporter for dopamine. As a result, we believe this work will be of interest to those engaged in the rational development of chemical sensors for small molecule analytes as well as to those interested in the use of computational approaches to further understand protein–ligand interactions.
机译:在生物相关分析物中开发护理点检测方法,这些分析物可以促进快速和适当的治疗是当前研究努力和兴趣的最前沿。在各种方法中,那些利用化学传感器的光电信号可以在与目标分析物的相互作用时调节化学传感器的光电信号的那些。在辅助其合理的发展中,根据具有所需特性的核心基序固定的外周官能团的明智选择至关重要。在此,我们报告了对三胺,脱甲肾上腺素和血清素的单胺转运蛋白的受体的三种精神活性物质,MDAI,MEXEDRONE和苯相关性的深入调查,特别是重点关注单个氨基酸残基的作用。我们首先通过将它们的实验确定的晶体结构几何形状与通过量子和分子力学优化的那些进行比较来评估配体的构象灵活性,以及​​分子力学,观察苯纤维的情况的显着变化。使用分子对接研究通过计算的对接分数鉴定优先结合位点。在所有情况下,无论单胺转运蛋白如何,精神活性物质都表现出与蛋白质的S1或中央部位的优选相互作用,符合先前的研究。然而,我们观察到,在绵延的情况下,仅在三次转运蛋白上进行相对效力的实验趋势。随后,为了进一步了解这些发现,并为这些物质的卓越化学传感器的合理开发铺平道路,我们将每个最近邻氨基酸残基的个体贡献计算为与靶分析物的结合。有趣的是,这些结果现在与这些实验效力趋势一致。此外,这些观察结果在所有与与相邻残留物(例如酪氨酸和天冬氨酸)的关键分子间相互作用相关的病例中,在配体与单胺转运蛋白的结合中的多巴胺。因此,我们认为这项工作将对那些从事化学传感器的合理开发的小分子分析物以及对使用计算方法进一步了解蛋白质 - 配体相互作用的人感兴趣。

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