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Y95 and E444 Interaction Required for High-Affinity S-Citalopram Binding in the Human Serotonin Transporter

机译:高亲和力S-西酞普兰绑定在人类5-羟色胺转运蛋白中需要Y95和E444相互作用。

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摘要

The human serotonin (5-hydroxytryptamine, 5-HT) transporter (hSERT) is responsible for the reuptake of 5-HT following synaptic release, as well as for import of the biogenic amine into several non-5-HT synthesizing cells including platelets. The antidepressant citalopram blocks SERT and thereby inhibits the transport of 5-HT. To identify key residues establishing high-affinity citalopram binding, we have built a comparative model of hSERT and Drosophila melanogaster SERT (dSERT) based on the Aquifex aeolicus leucine transporter (LeuTAa) crystal structure. In this study, citalopram has been docked into the homology model of hSERT and dSERT using RosettaLigand. Our models reproduce the differential binding affinities for the R- and S-isomers of citalopram in hSERT and the impact of several hSERT mutants. Species-selective binding affinities for hSERT and dSERT also can be reproduced. Interestingly, the model predicts a hydrogen bond between E444 in transmembrane domain 8 (TM8) and Y95 in TM1 that places Y95 in a downward position, thereby removing Y95 from a direct interaction with S-citalopram. Mutation of E444D results in a 10-fold reduced binding affinity for S-citalopram, supporting the hypothesis that Y95 and E444 form a stabilizing interaction in the S-citalopram/hSERT complex.
机译:人5-羟色胺(5-羟色胺,5-HT)转运蛋白(hSERT)负责突触释放后5-HT的再摄取,以及将生物胺导入包括血小板在内的几种非5-HT合成细胞中。抗抑郁药西酞普兰可阻断SERT,从而抑制5-HT的转运。为了确定建立高亲和力西酞普兰结合的关键残基,我们基于Aquifex aeolicus亮氨酸转运蛋白(LeuTAa)晶体结构建立了hSERT和果蝇果蝇SERT(dSERT)的比较模型。在这项研究中,西酞普兰已使用RosettaLigand对接到hSERT和dSERT的同源性模型中。我们的模型重现了hSERT中西酞普兰R和S异构体的不同结合亲和力以及几种hSERT突变体的影响。还可以复制hSERT和dSERT的物种选择性结合亲和力。有趣的是,该模型预测跨膜结构域8(TM8)中的E444与TM1中的Y95之间的氢键会将Y95置于向下位置,从而将Y95从与S-西酞普兰的直接相互作用中移除。 E444D突变导致与S-西酞普兰的结合亲和力降低10倍,支持以下假设:Y95和E444在S-西酞普兰/ hSERT复合物中形成稳定相互作用。

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