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从分子动力学角度选择和激活多巴胺 D3R。

Selectivity and activation of dopamine D3R from molecular dynamics.

机构信息

Institute of Functional Nano & Soft Materials and Jiangsu Key Laboratory for Carbon-Based Functional Materials & Devices, Soochow University, Suzhou, Jiangsu 215123, China.

出版信息

J Mol Model. 2012 Dec;18(12):5051-63. doi: 10.1007/s00894-012-1509-x. Epub 2012 Jul 3.

Abstract

D(3) receptor, a member of dopamine (DA) D(2)-like receptor family, which belongs to class A of G-protein coupled receptors (GPCRs), has been reported to play a critical role in neuropsychiatric disorders. Recently, the crystal structure of human dopamine D3 receptor was reported, which facilitates structure-based drug discovery of D3R significantly. We dock D3R-selective compounds into the crystal structure of D3R and homology structure of D2R. Then we perform 20 ns molecular dynamics (MD) of the receptor with selective compounds bound in explicit lipid and water. Our docking and MD results indicate the important residues related to the selectivity of D3R. Specifically, residue Thr(7.39) in D3R may contribute to the high selectivity of R-22 with D3R. Meanwhile, the 4-carbon linker and phenylpiperazine of R-22 improve the binding affinity and the selectivity with D3R. We also dock the agonists, including dopamine, into D3R and perform MD. Our molecular dynamics results of D3R with agonist bound show strong conformational changes from TM5, TM6, and TM7, outward movement of intracellular part of TM6, fluctuation of "ionic lock" motif and conformational change of Tyr(7.53), which is consistent with recent crystal structures of active GPCRs and illustrates the dynamical process during activation. Our results reveal the mechanism of selectivity and activation for D3R, which is important for developing high selective antagonists and agonists for D3R.

摘要

D(3)受体是多巴胺(DA)D(2)样受体家族的成员,属于 G 蛋白偶联受体(GPCR)A 类,据报道在神经精神疾病中发挥着关键作用。最近,报道了人源多巴胺 D3 受体的晶体结构,这极大地促进了 D3R 的基于结构的药物发现。我们将 D3R 选择性化合物对接至 D3R 的晶体结构和 D2R 的同源结构。然后,我们在含有选择性化合物的明胶脂质和水环境中对受体进行 20ns 的分子动力学(MD)模拟。我们的对接和 MD 结果表明了与 D3R 选择性相关的重要残基。具体来说,D3R 中的残基 Thr(7.39)可能有助于 R-22 与 D3R 的高选择性。同时,R-22 的 4-碳连接基和苯并哌嗪提高了与 D3R 的结合亲和力和选择性。我们还将激动剂,包括多巴胺,对接至 D3R 并进行 MD 模拟。我们对与激动剂结合的 D3R 的分子动力学结果显示,TM5、TM6 和 TM7 从外向内发生强烈的构象变化,TM6 胞内部分向外运动,“离子锁”模体发生波动,Tyr(7.53)发生构象变化,这与最近的活性 GPCR 晶体结构一致,说明了激活过程中的动力学过程。我们的结果揭示了 D3R 的选择性和激活机制,这对于开发高选择性的 D3R 拮抗剂和激动剂非常重要。

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