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Toward Understanding the Structural Basis of Partial Agonism at the Dopamine D-3 Receptor

机译:了解多巴胺 D-3 受体部分激动的结构基础

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摘要

Both dopamine D-3 receptor (D3R) partial agonists and antagonists have been implicated as potential medications for substance use disorders. In contrast to antagonists, partial agonists may cause fewer side effects since they maintain some dopaminergic tone and may be less disruptive to normal neuronal functions. Here, we report three sets of 4-phenylpiperazine stereoisomers that differ considerably in efficacy: the (R)-enantiomers are antagonists/weak partial agonists, whereas the (S)-enantiomers are much more efficacious. To investigate the structural basis of partial agonism, we performed comparative microsecond-scale molecular dynamics simulations starting from the inactive state of D3R in complex with these enantiomers. Analysis of the simulation results reveals common structural rearrangements near the ligand binding site induced by the bound (S)-enantiomers, but not by the (R)-enantiomers, that are features of partially activated receptor conformations. These receptor models bound with partial agonists may be useful for structure-based design of compounds with tailored efficacy profiles.
机译:多巴胺 D-3 受体 (D3R) 部分激动剂和拮抗剂都被认为是物质使用障碍的潜在药物。与拮抗剂相比,部分激动剂可能引起较少的副作用,因为它们保持一些多巴胺能张力,并且对正常神经元功能的破坏较小。在这里,我们报告了三组 4-苯基哌嗪立体异构体,它们的功效差异很大:(R)-对映异构体是拮抗剂/弱部分激动剂,而 (S)-对映异构体更有效。为了研究部分激动作用的结构基础,我们从D3R与这些对映异构体复合物的非活性状态开始,进行了比较微秒尺度的分子动力学模拟。对模拟结果的分析揭示了由结合的(S)-对映异构体诱导的配体结合位点附近的常见结构重排,而不是由(R)-对映异构体诱导,这是部分激活的受体构象的特征。这些与部分激动剂结合的受体模型可用于基于结构设计具有定制功效特征的化合物。

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