首页> 外文期刊>Journal of Computer-Aided Molecular Design >Significantly different effects of tetrahydroberberrubine enantiomers on dopamine D1/D2 receptors revealed by experimental study and integrated in silico simulation
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Significantly different effects of tetrahydroberberrubine enantiomers on dopamine D1/D2 receptors revealed by experimental study and integrated in silico simulation

机译:通过实验研究揭示的四氢啤酒培养物对映异构体对二巴胺D1 / D2受体的显着不同,并集成在硅仿真中

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Tetrahydroberberrubine (TU), an active tetrahydroprotoberberines (THPBs), is gaining increasing popularity as a potential candidate for treatment of anxiety and depression. One of its two enantiomers, l-TU, has been reported to be an antagonist of both D1 and D2 receptors, but the functional activity of the other enantiomer, d-TU, is still unknown. In this study, experiments were combined with in silico molecular simulations to (1) confirm and discover the functional activities of l-TU and d-TU, and (2) systematically evaluate the molecular mechanisms beyond the experimental observations. l-TU proved to be an antagonist of both D1 and D2 receptors (IC50=385nM and 985nM, respectively), while d-TU shows no affinity against either D1 or D2 receptor, based on the cAMP assay (D1 receptor) and calcium flux assay (D2 receptor). Results from both flexible-ligand docking studies and molecular dynamic (MD) simulations provided insights at the atomic level. The l-TU-bound structures predicted by MD (1) undergo an outward rotation of the extracellular helical bundles; (2) have an enlarged orthosteric binding pocket; and (3) have a central toggle switch that is prevented from rotating freely. These features are unique to the l-TU enantiomer and provide an explanation for its antagonistic behavior toward both D1 and D2 receptors. The present study provides new sight on the structural and functional relationships of l-TU and d-TU binding to dopamine receptors, and provides guidance to the rational design of novel molecules targeting these two dopamine receptors in the future.
机译:四氢啤酒培训(TU)是一种活性四氢丙杂铀(THPBS),越来越受欢迎,作为治疗焦虑和抑郁的潜在候选者。据报道,其两种对映体L-Tu中的一种是D1和D2受体的拮抗剂,而是其他对映体D-TU的功能活性仍然未知。在该研究中,将实验与硅分子模拟相结合至(1)确认并发现L-Tu和D-Tu的功能活动,(2)系统地评估超出实验观察的分子机制。 L-Tu被证明是D1和D2受体(IC50 = 385nm和985nm)的拮抗剂,而D-Tu基于CAMP测定(D1受体)和钙通量没有对D1或D2受体的亲和力。测定(D2受体)。柔性配体对接研究和分子动力学(MD)模拟的结果提供了原子水平的见解。由MD(1)预测的L-TU-绑定结构经历了细胞外螺旋束的向外旋转; (2)具有扩大的矫形底袋; (3)具有防止自由旋转的中央切换开关。这些特征对L-TU对映体是独一无二的,并提供对D1和D2受体的拮抗行为的解释。本研究为L-TU和D-Tu与多巴胺受体结合的结构和功能关系提供了新的景点,并为未来靶向这两种多巴胺受体的新分子的合理设计提供了指导。

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