首页> 美国卫生研究院文献>other >Understanding the Structural Requirements of Hybrid (S)-6-((2-(4-Phenylpiperazin-1-yl)ethyl)(propyl)amino)-5678-tetrahydronaphthalen-1-ol and its Analogs as D2/D3 Receptor Ligands: A Three-Dimensional Quantitative Structure-Activity Relationship (3D QSAR) Investigation
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Understanding the Structural Requirements of Hybrid (S)-6-((2-(4-Phenylpiperazin-1-yl)ethyl)(propyl)amino)-5678-tetrahydronaphthalen-1-ol and its Analogs as D2/D3 Receptor Ligands: A Three-Dimensional Quantitative Structure-Activity Relationship (3D QSAR) Investigation

机译:了解杂化(S)-6-((2-(4-苯基哌嗪-1-基)乙基)(丙基)氨基)-5678-四氢萘-1-醇及其类似物的结构要求D2 / D3受体配体:三维定量结构-活性关系(3D QSAR)研究

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摘要

To gain insights into the structural requirements for dopamine D2 and D3 agonists in the treatment of Parkinson’s disease (PD) and to elucidate the basis of selectivity for D3 over D2 (D2/D3), 3D quantitative structure-activity relationship (3D QSAR) investigations using CoMFA (comparative molecular field analysis) and CoMSIA (comparative molecular similarity indices analysis) methods were performed on a series of 45 structurally related D2 and D3 dopaminergic ligands. Two alignment methods (atom-based and flexible) and two charge calculation methods (Gasteiger-Hückel and AM1) were used in the present study. Overall, D2 affinity and selectivity (D2/D3) models performed better with r2cv values of 0.71 and 0.63 for CoMFA and 0.71 and 0.79 for CoMSIA, respectively. The corresponding predictive r2 values for the CoMFA and CoMSIA models were 0.92 and 0.86 and 0.91 and 0.78, respectively. The CoMFA models generated using flexible alignment outperformed the models with the atom-based alignment in terms of relevant statistics and interpretability of the generated contour maps while CoMSIA models obtained using atom-based alignment showed superiority in terms of internal and external predictive abilities. The presence of carbonyl group (C=O) attached to the piperazine ring and the hydrophobic biphenyl ring were found to be the most important features responsible for the D3 selectivity over D2. This study can be further utilized to design and develop selective and potent dopamine agonists to treat PD.
机译:为了深入了解多巴胺D2和D3激动剂在治疗帕金森氏病(PD)中的结构要求,并阐明D3对D2的选择性基础(D2 / D3),3D定量构效关系(3D QSAR)研究使用CoMFA(比较分子场分析)和CoMSIA(比较分子相似性指数分析)方法对一系列45个与结构相关的D2和D3多巴胺能配体进行了研究。在本研究中使用了两种对准方法(基于原子的和柔性的)和两种电荷计算方法(Gasteiger-Hückel和AM1)。总体而言,D2亲和力和选择性(D2 / D3)模型的效果更好,其中CoMFA的r 2 cv值分别为0.71和0.63,而CoMSIA的r 2 cv值分别为0.71和0.79。 CoMFA和CoMSIA模型的相应预测r 2 值分别为0.92和0.86,以及0.91和0.78。就产生的轮廓图的相关统计和可解释性而言,使用柔性对准生成的CoMFA模型优于基于原子对准的模型,而使用基于原子对准的CoMSIA模型在内部和外部预测能力方面显示出优越性。发现连接至哌嗪环和疏水联苯环的羰基(C = O)的存在是导致D3相对于D2选择性的最重要特征。该研究可进一步用于设计和开发选择性和有效的多巴胺激动剂来治疗PD。

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