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首页> 外文期刊>European Journal of Medicinal Chemistry: Chimie Therapeutique >Synthesis, in vitro binding studies and docking of long-chain arylpiperazine nitroquipazine analogues, as potential serotonin transporter inhibitors.
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Synthesis, in vitro binding studies and docking of long-chain arylpiperazine nitroquipazine analogues, as potential serotonin transporter inhibitors.

机译:合成,体外结合研究和远链芳基哌嗪Nitroquipazine类似物的对接,作为潜在的血清素转运蛋白抑制剂。

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It is well known that 6-nitroquipazine exhibits about 150-fold higher affinity for the serotonin transporter (SERT) than quipazine and recently we showed quipazine buspirone analogues with high to moderate SERT affinity. Now we have designed and synthesized several 6-nitroquipazine buspirone derivatives. Unexpectedly, their SERT binding affinities were moderate, and much lower than that of the previously studied quipazine buspirone analogues. To explain these findings, docking studies of both groups of compounds into two different homology models of human SERT was performed using a flexible target-ligand docking approach (4D docking). The crystal structures of leucine transporter from Aquifex aeolicus in complex with leucine and with tryptophan were used as templates for the SERT models in closed and outward-facing conformations, respectively. We found that the latter conformation represents the most reliable model for binding of buspirone analogues. Docking into that model showed that the nitrated compounds acquire a rod like shape in the binding pocket with polar groups (nitro- and imido-) at the ends of the rod. 6-Nitro substituents gave steric clashes with amino acids located at the extracellular loop 4, which may explain their lower affinity than corresponding quipazine buspirone analogues. The results from the present study may suggest chemical design strategies to improve the SERT modulators.
机译:它公知的是约6 nitroquipazine展品150倍的血清素转运蛋白(SERT)比喹哌嗪更高的亲和力和最近我们发现具有高喹哌嗪丁螺环酮的类似物至适中的SERT亲和力。现在我们已经设计并合成数6 nitroquipazine丁螺环酮衍生物。没想到,他们的SERT结合的亲和力是温和的,并且比以前的研究喹哌嗪丁螺环酮类似物的要低得多。为了解释这些发现,对接的化合物的两个组的研究到人SERT的两个不同的同源性模型中使用柔性靶 - 配体对接的方法(4D对接)进行。从嗜超嗜热菌中复合物与亮氨酸和色氨酸亮氨酸转运蛋白的晶体结构分别用作用于封闭和外向构象的SERT模型模板。我们发现,后者的构象代表丁螺环酮类似物的结合是最可靠的模型。对接成模型表明,硝化化合物获得像与在杆的端部的极性基团(硝基和imido-)结合口袋形状的杆。 6-硝基取代基,得到具有位于胞外环4个氨基酸,这可能解释比对应喹哌嗪丁螺环酮类似物其亲和力较低空间碰撞。从目前的研究结果可能表明化工设计策略,以提高SERT调制器。

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