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α7 型烟碱型乙酰胆碱受体正位配体结合域中的多个相互作用区域。

Multiple interaction regions in the orthosteric ligand binding domain of the α7 neuronal nicotinic acetylcholine receptor.

机构信息

Targacept, Inc., 200 East First Street, Suite 300, Winston-Salem, North Carolina 27101, USA.

出版信息

J Chem Inf Model. 2012 Nov 26;52(11):3064-73. doi: 10.1021/ci3001953. Epub 2012 Nov 6.

Abstract

Neuronal nicotinic receptors (nAChRs) belong to the Cys-loop family of ligand-gated ion channels and are formed from five subunits either as homologous or heterologous, oligomeric receptors, and are of interest as targets for treatment of a variety of central and peripheral nervous system disorders. Using a model of the homopentameric α7 nAChR extracellular region derived from the homologous acetylcholine binding protein (AChBP) from Aplysia California, binding modes of structurally diverse, high affinity α7 ligands were examined by docking to the orthosteric ligand binding domain. While all α7 ligands show similar interactions between the essential positively charged cationic center of the ligand and αTRP147 of the receptor (i.e., hydrogen bond to the tryptophan backbone carbonyl and cation-π interaction), docked poses of various ligands show the potential to interact with three additional regions within the binding domain, identified as regions 1, 2, and 3. Region 1 is located in the vicinity of Loop-E, involves ligand-protein interactions via a network of water-mediated hydrogen bonds, and is analogous to the region where pyridinyl groups are located in many of the AChBP-nicotinic ligand cocrystal structures. Ligands interacting with region 2 probe an area that spans from Loop-E to Loops-D and -F and may contribute to α7-selectivity over other nAChR subtypes. Several high affinity α7 ligands show strong interactions in this region. Region 3 is located near Loop-F of the protein and is analogous to an area involved in binding of an active metabolite derived from DMXBA, in an AChBP cocrystal structure. It appears that π-π interactions contribute to binding affinities of α7 nAChR ligands in this latter region, and further, this region may also contribute to α7-selectivity over other nAChR subtypes. Analysis of the resulting poses suggests that compounds with high α7 binding affinity do not require interactions across all regions simultaneously, but that interactions in multiple regions may enhance ligand binding and increase selectivity. Our results provide insight for further development of selective α7 nAChR ligands and may prove useful for the design of novel scaffolds for specific nicotinic therapeutic agents.

摘要

神经元烟碱型乙酰胆碱受体(nAChRs)属于配体门控离子通道的 Cys 环家族,由五个亚基组成同源或异源寡聚体受体,作为治疗各种中枢和外周神经系统疾病的靶点而受到关注。利用来自加利福尼亚海兔的同源乙酰胆碱结合蛋白(AChBP)的同源五聚体 α7 nAChR 细胞外区域模型,通过对接到正位配体结合域来检查结构多样的高亲和力 α7 配体的结合模式。虽然所有 α7 配体都显示出配体的必需正电荷阳离子中心和受体的 αTRP147 之间的相似相互作用(即与色氨酸骨架羰基形成氢键和阳离子-π 相互作用),但各种配体的对接构象显示出与结合域内三个额外区域相互作用的潜力,这些区域被确定为区域 1、2 和 3。区域 1 位于 Loop-E 附近,通过水介导氢键的网络涉及配体-蛋白相互作用,类似于许多 AChBP-烟碱配体共晶结构中吡啶基所在的区域。与区域 2 相互作用的配体探测跨越 Loop-E 到 Loop-D 和 -F 的区域,可能有助于 α7 对其他 nAChR 亚型的选择性。一些高亲和力的 α7 配体在该区域显示出强烈的相互作用。区域 3 位于蛋白质的 Loop-F 附近,类似于 AChBP 共晶结构中与 DMXBA 衍生的活性代谢物结合的区域。似乎 π-π 相互作用有助于后者区域中 α7 nAChR 配体的结合亲和力,并且该区域也可能有助于 α7 对其他 nAChR 亚型的选择性。对所得构象的分析表明,具有高 α7 结合亲和力的化合物不需要同时与所有区域相互作用,但多个区域的相互作用可以增强配体结合并提高选择性。我们的结果为进一步开发选择性 α7 nAChR 配体提供了深入的了解,并可能有助于为特定烟碱治疗剂的新型支架设计提供有用的信息。

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