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Probing Binding Landscapes and Molecular Recognition Mechanisms of Atypical Antipsychotic Drugs towards the Selective Targeting of D 2 2 Dopamine Receptor

机译:探讨非典型抗精神病药朝向D 2 2多巴胺受体的选择性靶向的结合景观和分子识别机制

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Abstract Dopamine receptors constitute a unique class of G‐protein coupled receptors that mediate the activities of dopamine, a neurotransmitter implicated in diverse neurological diseases when dysregulated. Over the years, antipsychotic drugs have been primarily directed towards D 2 dopamine receptor (DRD2) while associable adverse effects have been centred on non‐selective targeting. The recent crystal structure of DRD2 in complex with atypical antipsychotic could further aid the structure‐based design of highly DRD2‐selective antipsychotics. Therefore, in this study, we comprehensively investigate the molecular recognition and differential binding landscapes of class‐I and II DRD2 atypical antipsychotics, using membrane‐bilayer molecular dynamics simulation and binding free energy techniques. Findings revealed that selected class‐I antipsychotics exhibited binding dynamics and poses dissimilar to the class‐II types with different interactive mechanisms at the binding cavity of DRD2. More interestingly, the class‐II drugs established a highly coordinated binding at the DRD2 active site with a pertinent and recurrent involvement of Asp114 via strong hydrogen interactions. Furthermore, while these compounds exert distinct effects on DRD2 structure, findings revealed that the class‐II types favourably engaged the deep hydrophobic pocket of DRD2 compared to the class‐I drugs. We speculate that these findings will be fundamental to the discovery of highly selective DRD2 antipsychotics.
机译:摘要多巴胺受体构成一类独特的G蛋白偶联受体,其介导多巴胺的活性,这是一种在多样性的神经疾病中涉及多样性的神经疾病。多年来,抗透视药物主要针对D 2多巴胺受体(DRD2),而具有联系的不良反应已经以非选择性靶向为中心。近期DRD2的晶体结构与非典型抗精神病症的复合物中可以进一步帮助高度DRD2选择性抗精神病学的基于结构的设计。因此,在这项研究中,我们全面研究了I和II DRD2非典型抗精神病药的分子识别和差异结合景观,使用膜 - 双层分子动力学模拟和结合自由能技术。结果表明,所选择的I类抗精神病学表现出结合动力学,并且与DRD2的装订腔处具有不同的交互式机制的II类类型。更有意义的是,II类药物在DRD2活性位点在DRD2活性位点具有高度协调的结合,其通过强氢相互作用具有截止值和复发的累及。此外,虽然这些化合物对DRD2结构产生了明显的影响,但结果显示,与I药物相比,II类类型有利地接合DRD2的深层疏水口袋。我们推测这些发现将是对高选择性DRD2抗精神病学的发现的基础。

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