School of Pharmaceutical Sciences, Chongqing University, Chongqing 401331, China.
Phys Chem Chem Phys. 2020 Mar 7;22(9):5132-5144. doi: 10.1039/c9cp05764a. Epub 2020 Feb 19.
Vilazodone is a novel antidepressant used for the treatment of major depressive disorder (MDD) with a primary action mechanism of inhibiting the human serotonin reuptake transporter (hSERT) and acting as a 5-HT receptor partial agonist. The interaction between vilazodone and the 5-HT receptor has been reported, however, the binding mode of vilazodone in the hSERT remains elusive. In the current study, to elucidate the molecular mechanism of vilazodone binding in the hSERT, the drug and its five analogs were docked into the hSERT crystal structure as initial conformations and were sampled by 400 ns molecular dynamics (MD) simulations. Through the analysis of the profiles of protein-ligand binding free energies, interaction fingerprints, and conformational rearrangements, the binding mode of vilazodone in the hSERT was revealed. As a result, unlike the classical antidepressants located in the S1 site of the hSERT, vilazodone adopted a linear pose in the binding pocket. Its arylpiperazine fragment occupies the central site (S1) and interacts with Y95, D98, I172, Y176, F335, F341, S438, and T439, while the indole fragment extends to the allosteric site (S2) via interacting with the ionic switch (R104/E403) between the two sites. The new insights obtained are not only helpful in understanding the binding mode of vilazodone in the hSERT, but also provide valuable guidance to the discovery of novel antidepressant drugs.
维拉佐酮是一种新型抗抑郁药,用于治疗重度抑郁症(MDD),其主要作用机制是抑制人血清素再摄取转运体(hSERT)并作为 5-HT 受体部分激动剂。已经报道了维拉佐酮与 5-HT 受体的相互作用,但是维拉佐酮在 hSERT 中的结合模式仍然难以捉摸。在本研究中,为了阐明维拉佐酮在 hSERT 中的结合分子机制,将该药物及其五种类似物作为初始构象对接入 hSERT 晶体结构,并通过 400ns 分子动力学(MD)模拟进行采样。通过分析蛋白质-配体结合自由能、相互作用指纹和构象重排的分布情况,揭示了维拉佐酮在 hSERT 中的结合模式。结果表明,与位于 hSERT 的 S1 位点的经典抗抑郁药不同,维拉佐酮在结合口袋中采用线性构象。其芳基哌嗪片段占据中央位点(S1)并与 Y95、D98、I172、Y176、F335、F341、S438 和 T439 相互作用,而吲哚片段通过与两个位点之间的离子开关(R104/E403)相互作用延伸到变构位点(S2)。所获得的新见解不仅有助于理解维拉佐酮在 hSERT 中的结合模式,而且为新型抗抑郁药物的发现提供了有价值的指导。