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西酞普兰的两种对映异构体以相反的方向与人类 5-羟色胺转运体结合。

The two enantiomers of citalopram bind to the human serotonin transporter in reversed orientations.

机构信息

Center for Insoluble Protein Structures (inSPIN), Interdisciplinary Nanoscience Center (iNANO), Aarhus University, Langelandsgade 140, DK-8000 Aarhus C, Denmark.

出版信息

J Am Chem Soc. 2010 Feb 3;132(4):1311-22. doi: 10.1021/ja906923j.

Abstract

The two enantiomers of the antidepressant citalopram inhibit the human serotonin transporter substantially differently. Previous studies revealed Tyr95 and Ile172 as important for citalopram binding, however, the overall orientation of the ligands in the binding site and the protein-ligand interaction points remain unknown. The binding of S- and R-citalopram to a human serotonin transporter homology model are herein examined via docking simulations including induced fit effects. For a better description of the formal charges of the ligand when bound inside the protein, polarization effects of the protein were included by additional quantum-polarized ligand docking calculations, where ligand charges are evaluated using QM/MM calculations. By this approach a much clearer picture emerged of the positions of the functional groups of citalopram. The two enantiomers are predicted to bind in the substrate binding pocket with opposite orientations of their aromatic groups. The predicted binding modes are experimentally validated using human wild type and 15 serotonin transporter mutants and 13 optically pure citalopram analogues. Important protein-ligand interaction points were identified validating one binding model for each enantiomer. In the validated model of the high affinity enantiomer, S-citalopram, the fluorine atom is located near Ala173 and Thr439 and the cyano group is in close proximity of Phe341; these contacts are found to be reversed for the R-enantiomer.

摘要

抗抑郁药西酞普兰的两种对映异构体对人血清素转运体的抑制作用有很大的不同。先前的研究表明 Tyr95 和 Ile172 对西酞普兰的结合很重要,然而,配体在结合位点中的整体取向和蛋白-配体相互作用点仍然未知。通过包括诱导契合效应的对接模拟,研究了 S-和 R-西酞普兰与人血清素转运体同源模型的结合。为了更好地描述配体结合在蛋白质内部时的形式电荷,通过额外的量子极化配体对接计算包括了蛋白质的极化效应,其中使用 QM/MM 计算评估配体的电荷。通过这种方法,西酞普兰的官能团的位置更加清晰。两种对映异构体被预测以相反的芳香基团取向结合在底物结合口袋中。使用人野生型和 15 种血清素转运体突变体和 13 种光学纯西酞普兰类似物对预测的结合模式进行了实验验证。确定了重要的蛋白-配体相互作用点,为每个对映异构体验证了一个结合模型。在高亲和力对映异构体 S-西酞普兰的验证模型中,氟原子位于 Ala173 和 Thr439 附近,氰基靠近 Phe341;对于 R-对映异构体,这些接触被发现是相反的。

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