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Insights into the binding of GABA to the insect RDL receptor from atomistic simulations: a comparison of models

机译:原子模拟对GABA与昆虫RDL受体结合的了解:模型比较

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摘要

The resistance to dieldrin (RDL) receptor is an insect pentameric ligand-gated ion channel (pLGIC). It is activated by the neurotransmitter γ-aminobutyric acid (GABA) binding to its extracellular domain; hence elucidating the atomistic details of this interaction is important for understanding how the RDL receptor functions. As no high resolution structures are currently available, we built homology models of the extracellular domain of the RDL receptor using different templates, including the widely used acetylcholine binding protein and two pLGICs, the Erwinia Chrysanthemi ligand-gated ion channel (ELIC) and the more recently resolved GluCl. We then docked GABA into the selected three dimensional structures, which we used as starting points for classical molecular dynamics simulations. This allowed us to analyze in detail the behavior of GABA in the binding sites, including the hydrogen bond and cation-π interaction networks it formed, the conformers it visited and the possible role of water molecules in mediating the interactions; we also estimated the binding free energies. The models were all stable and showed common features, including interactions consistent with experimental data and similar to other pLGICs; differences could be attributed to the quality of the models, which increases with increasing sequence identity, and the use of a pLGIC template. We supplemented the molecular dynamics information with metadynamics, a rare event method, by exploring the free energy landscape of GABA binding to the RDL receptor. Overall, we show that the GluCl template provided the best models. GABA forming direct salt-bridges with Arg211 and Glu204, and cation-π interactions with an aromatic cage including Tyr109, Phe206 and Tyr254, represents a favorable binding arrangement, and the interaction with Glu204 can also be mediated by a water molecule.
机译:对狄氏剂(RDL)受体的抗性是昆虫五聚体配体门控离子通道(pLGIC)。它是由神经递质γ-氨基丁酸(GABA)结合到其胞外域而激活的;因此阐明这种相互作用的原子细节对于理解RDL受体的功能很重要。由于目前尚无高分辨率结构,因此我们使用不同的模板建立了RDL受体胞外域的同源性模型,包括广泛使用的乙酰胆碱结合蛋白和两个pLGIC,欧文氏菊花配体门控离子通道(ELIC)等。最近解决的GluCl。然后,我们将GABA对接到选定的三维结构中,将其用作经典分子动力学模拟的起点。这使我们能够详细分析GABA在结合位点的行为,包括它形成的氢键和阳离子-π相互作用网络,它所访问的构象异构体以及水分子在介导相互作用中的可能作用。我们还估计了结合自由能。这些模型都是稳定的,并显示出共同的特征,包括与实验数据一致且与其他pLGIC相似的相互作用。差异可以归因于模型的质量,该质量随序列同一性的增加而增加,并使用了pLGIC模板。我们通过探索GABA与RDL受体结合的自由能态势,利用分子动力学(一种罕见的事件方法)补充了分子动力学信息。总体而言,我们显示GluCl模板提供了最佳模型。 GABA与Arg211和Glu204形成直接的盐桥,以及与包括Tyr109,Phe206和Tyr254的芳香族笼的阳离子-π相互作用表示良好的结合排列,并且与Glu204的相互作用也可以由水分子介导。

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