Key Laboratory of Industrial Ecology and Environmental Engineering, Faculty of Chemical, Environmental and Biological Science and Technology, Dalian University of Technology, Dalian 116024, China.
Institute of Chemical Process Systems Engineering, School of Chemical Engineering, Dalian University of Technology, Dalian 116024, China.
Molecules. 2020 Jan 18;25(2):406. doi: 10.3390/molecules25020406.
Glutamate plays a crucial role in the treatment of depression by interacting with the metabotropic glutamate receptor subtype 5 (mGluR5), whose negative allosteric modulators (NAMs) are thus promising antidepressants. At present, to explore the structural features of 106 newly synthesized aryl benzamide series molecules as mGluR5 NAMs, a set of ligand-based three-dimensional quantitative structure-activity relationship (3D-QSAR) analyses were firstly carried out applying comparative molecular field analysis (CoMFA) and comparative molecular similarity indices analysis (CoMSIA) methods. In addition, receptor-based analysis, namely molecular docking and molecular dynamics (MD) simulations, were performed to further elucidate the binding modes of mGluR5 NAMs. As a result, the optimal CoMSIA model obtained shows that cross-validated correlation coefficient = 0.70, non-cross-validated correlation coefficient = 0.89, predicted correlation coefficient = 0.87. Moreover, we found that aryl benzamide series molecules bind as mGluR5 NAMs at Site 1, which consists of amino acids Pro655, Tyr659, Ile625, Ile651, Ile944, Ser658, Ser654, Ser969, Ser965, Ala970, Ala973, Trp945, Phe948, Pro903, Asn907, Val966, Leu904, and Met962. This site is the same as that of other types of NAMs; mGluR5 NAMs are stabilized in the "linear" and "arc" configurations mainly through the H-bonds interactions, π-π stacking interaction with Trp945, and hydrophobic contacts. We hope that the models and information obtained will help understand the interaction mechanism of NAMs and design and optimize NAMs as new types of antidepressants.
谷氨酸通过与代谢型谷氨酸受体亚型 5(mGluR5)相互作用,在抑郁症的治疗中发挥着关键作用,其负变构调节剂(NAMs)因此成为很有前途的抗抑郁药。目前,为了探索 106 种新合成的芳基苯甲酰胺系列分子作为 mGluR5 NAMs 的结构特征,我们首先应用比较分子场分析(CoMFA)和比较分子相似性指数分析(CoMSIA)方法进行了一组基于配体的三维定量构效关系(3D-QSAR)分析。此外,还进行了基于受体的分析,即分子对接和分子动力学(MD)模拟,以进一步阐明 mGluR5 NAMs 的结合模式。结果表明,获得的最佳 CoMSIA 模型的交叉验证相关系数 = 0.70,非交叉验证相关系数 = 0.89,预测相关系数 = 0.87。此外,我们发现芳基苯甲酰胺系列分子作为 mGluR5 NAMs 结合在 Site 1 上,该 Site 由氨基酸 Pro655、Tyr659、Ile625、Ile651、Ile944、Ser658、Ser654、Ser969、Ser965、Ala970、Ala973、Trp945、Phe948、Pro903、Asn907、Val966、Leu904 和 Met962 组成。该 Site 与其他类型的 NAMs 相同;mGluR5 NAMs 主要通过氢键相互作用、与 Trp945 的π-π堆积相互作用和疏水接触稳定在“线性”和“弧形”构象中。我们希望获得的模型和信息将有助于理解 NAMs 的相互作用机制,并设计和优化 NAMs 作为新型抗抑郁药。