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A Molecular Basis for Selective Antagonist Destabilization of Dopamine D3 Receptor Quaternary Organization

机译:多巴胺D3受体第四季选择性拮抗物去稳定化的分子基础。

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摘要

The dopamine D3 receptor (D3R) is a molecular target for both first-generation and several recently-developed antipsychotic agents. Following stable expression of this mEGFP-tagged receptor, Spatial Intensity Distribution Analysis indicated that a substantial proportion of the receptor was present within dimeric/oligomeric complexes and that increased expression levels of the receptor favored a greater dimer to monomer ratio. Addition of the antipsychotics, spiperone or haloperidol, resulted in re-organization of D3R quaternary structure to promote monomerization. This action was dependent on ligand concentration and reversed upon drug washout. By contrast, a number of other antagonists with high affinity at the D3R, did not alter the dimer/monomer ratio. Molecular dynamics simulations following docking of each of the ligands into a model of the D3R derived from the available atomic level structure, and comparisons to the receptor in the absence of ligand, were undertaken. They showed that, in contrast to the other antagonists, spiperone and haloperidol respectively increased the atomic distance between reference α carbon atoms of transmembrane domains IV and V and I and II, both of which provide key interfaces for D3R dimerization. These results offer a molecular explanation for the distinctive ability of spiperone and haloperidol to disrupt D3R dimerization.
机译:多巴胺D3受体(D3R)是第一代和几种最近开发的抗精神病药的分子靶标。在该mEGFP标记的受体稳定表达后,空间强度分布分析表明,二聚体/寡聚复合物中存在大量的受体,并且受体表达水平的提高有利于更大的二聚体与单体比率。抗精神病药,哌隆或氟哌啶醇的加入导致D3R季结构的重组,以促进单体化。该作用取决于配体浓度,并在药物洗脱后逆转。相反,许多其他在D3R上具有高亲和力的拮抗剂并没有改变二聚体/单体比。在将每个配体对接到衍生自可用原子能级结构的D3R模型之后,进行了分子动力学模拟,并与不存在配体的受体进行了比较。他们表明,与其他拮抗剂相比,Spiperone和氟哌啶醇分别增加了跨膜结构域IV和V以及I和II的参考α碳原子之间的原子距离,二者均提供了D3R二聚作用的关键界面。这些结果为Spiperone和氟哌啶醇破坏D3R二聚化的独特能力提供了分子解释。

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