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Identification by virtual screening and functional characterisation of novel positive and negative allosteric modulators of the α7 nicotinic acetylcholine receptor

机译:通过虚拟筛选和功能表征鉴定新型α7烟碱乙酰胆碱受体的正负变构调节剂

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摘要

Several previous studies have demonstrated that the activity of neurotransmitters acting on ligand-gated ion channels such as the nicotinic acetylcholine receptor (nAChR) can be altered by compounds binding to allosteric modulatory sites. In the case of α7 nAChRs, both positive and negative allosteric modulators (PAMs and NAMs) have been identified and have attracted considerable interest. A recent study, employing revised structural models of the transmembrane domain of the α7 nAChR in closed and open conformations, has provided support for an inter-subunit transmembrane allosteric binding site (Newcombe et al 2017). In the present study, we have performed virtual screening of the DrugBank database using pharmacophore queries that were based on the predicted binding mode of PAMs to α7 nAChR structural models. A total of 81 compounds were identified in the DrugBank database, of which the 25 highest-ranked hits corresponded to one of four previously-identified therapeutic compound groups (carbonic anhydrase inhibitors, cyclin-dependent kinase inhibitors, diuretics targeting the Na+-K+-Cl- cotransporter, and fluoroquinolone antibiotics targeting DNA gyrase). The top-ranked compound from each of these four groups (DB04763, DB08122, furosemide and pefloxacin, respectively) was tested for its effects on human α7 nAChR expressed in Xenopus oocytes using two-electrode voltage-clamp electrophysiology. These studies, conducted with wild-type, mutant and chimeric receptors, resulted in all four compounds exerting allosteric modulatory effects. While DB04763, DB08122 and pefloxacin were antagonists, furosemide potentiated ACh responses. Our findings, supported by docking studies, are consistent with these compounds acting as PAMs and NAMs of the α7 nAChR via interaction with a transmembrane site.
机译:先前的一些研究表明,作用于配体门控离子通道(例如烟碱乙酰胆碱受体(nAChR))的神经递质的活性可以通过与变构调节位点结合的化合物来改变。就α7nAChRs而言,正负变构调节剂(PAM和NAM)均已被确定,并引起了极大的兴趣。最近的一项研究采用了封闭和开放构象的α7nAChR跨膜结构域的修订结构模型,为亚基间跨膜变构结合位点提供了支持(Newcombe et al.2017)。在本研究中,我们已经使用药效基团查询对DrugBank数据库进行了虚拟筛选,该查询基于PAM与α7nAChR结构模型的预测结合模式。在DrugBank数据库中鉴定出总共81种化合物,其中25种排名最高的命中对应于四个先前确定的治疗化合物组之一(碳酸酐酶抑制剂,细胞周期蛋白依赖性激酶抑制剂,利于Na +的利尿剂 -K + -Cl -辅助转运蛋白和靶向DNA促旋酶的氟喹诺酮类抗生素)。使用两电极电压钳电生理学测试了这四个组中最上位的化合物(分别为DB04763,DB08122,速尿和培氟沙星)对非洲爪蟾卵母细胞中表达的人α7nAChR的影响。用野生型,突变体和嵌合受体进行的这些研究导致所有四种化合物发挥变构调节作用。尽管DB04763,DB08122和培氟沙星是拮抗剂,但速尿可增强ACh反应。我们的发现得到对接研究的支持,与这些化合物通过与跨膜位点的相互作用而充当α7nAChR的PAM和NAM一致。

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