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首页> 外文期刊>Journal of molecular graphics & modelling >Identification of novel allosteric modulator binding sites in NMDA receptors: A molecular modeling study
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Identification of novel allosteric modulator binding sites in NMDA receptors: A molecular modeling study

机译:鉴定NMDA受体中的新型变构调节剂结合位点:分子建模研究。

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摘要

The dysfunction of N-methyl-D-Aspartate receptors (NMDARs), a subtype of glutamate receptors, is correlated with schizophrenia, stroke, and many other neuropathological disorders. However, not all NMDAR subtypes equally contribute towards these disorders. Since NMDARs composed of different GluN2 sub-units (GluN2A-D) confer varied physiological properties and have different distributions in the brain, pharmacological agents that target NMDARs with specific GluN2 subunits have significant potential for therapeutic applications. In our previous research, we have identified a family of novel allosteric modulators that differentially potentiate and/or inhibit NMDARs of differing GluN2 subunit composition. To further elucidate their molecular mechanisms, in the present study, we have identified four potential binding sites for novel allosteric modulators by performing molecular modeling, docking, and in silica mutations. The molecular determinants of the modulator binding sites (MBS), analysis of particular MBS electrostatics, and the specific loss or gain of binding after mutations have revealed modulators that have strong potential affinities for specific MBS on given subunits and the role of key amino acids in either promoting or obstructing modulator binding. These findings will help design higher affinity GluN2 subunit-selective pharmaceuticals, which are currently unavailable to treat psychiatric and neurological disorders. (C) 2015 Elsevier Inc. All rights reserved.
机译:谷氨酸受体亚型的N-甲基-D-天冬氨酸受体(NMDARs)功能障碍与精神分裂症,中风和许多其他神经病理疾病有关。但是,并非所有NMDAR亚型均同样导致这些疾病。由于由不同GluN2亚基(GluN2A-D)组成的NMDAR具有不同的生理特性并在大脑中具有不同的分布,因此靶向具有特定GluN2亚基的NMDAR的药理剂具有巨大的治疗应用潜力。在我们以前的研究中,我们已经鉴定出一系列新型的变构调节剂,它们可以不同地增强和/或抑制不同GluN2亚基组成的NMDAR。为了进一步阐明它们的分子机制,在本研究中,我们已经通过执行分子建模,对接和二氧化硅突变,确定了新的变构调节剂的四个潜在结合位点。调节剂结合位点(MBS)的分子决定因素,特定MBS静电的分析以及突变后特定的结合丧失或获得的结合已揭示,调节剂对特定亚基在给定的亚基上具有很强的潜在亲和力,而关键氨基酸在其中的作用促进或阻碍调节剂结合。这些发现将有助于设计更高亲和力的GluN2亚基选择性药物,目前尚不能用于治疗精神病和神经病。 (C)2015 Elsevier Inc.保留所有权利。

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