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人甘氨酸受体中的激动剂和拮抗剂结合

Agonist and antagonist binding in human glycine receptors.

作者信息

Yu Rilei, Hurdiss Eliott, Greiner Timo, Lape Remigijus, Sivilotti Lucia, Biggin Philip C

机构信息

Structural Bioinformatics and Computational Biochemistry, Department of Biochemistry, University of Oxford , South Parks Road, Oxford OX1 3QU, United Kingdom.

出版信息

Biochemistry. 2014 Sep 30;53(38):6041-51. doi: 10.1021/bi500815f. Epub 2014 Sep 15.

Abstract

The human glycine receptor (hGlyR) is an anion-permeable ligand-gated channel that is part of a larger superfamily of receptors called the Cys-loop family. hGlyRs are particularly amenable to single-channel recordings, thus making them a model experimental system for understanding the Cys-loop receptor family in general. Understanding the relationship between agonist binding and efficacy in Cys-loop receptors should improve our future prospects for making specific agonists or antagonists. However, at present, there is no high-resolution structure for the complete hGlyR, and thus, modeling is needed to provide a physical framework on which to interpret single-channel data. The structure of the glutamate-gated chloride channel from Caenorhabditis elegans shows a much higher level of sequence identity to human hGlyR than previous templates such as AChBP or the bacterial channels, GLIC and ELIC. Thus, we constructed a model of the hGlyR and validated it against previously reported mutagenesis data. We used molecular dynamics to refine the model and to explore binding of both an agonist (glycine) and an antagonist (strychnine). The model shows excellent agreement with previous data but also suggests some unique features: (i) a water molecule that forms part of the binding site and allows us to account for some previous results that were difficult to reconcile, (ii) an interaction of the glycine agonist with S129, and (iii) an effect from E211, both of which we confirmed with new site-directed mutagenesis and patch clamp recordings. Finally, examination of the simulations suggests that strychnine binding induces movement to a conformational state distinct from the glycine-bound or apo state, not only within the ligand-binding domain but also in the transmembrane domain.

摘要

人类甘氨酸受体(hGlyR)是一种阴离子通透的配体门控通道,属于一个更大的受体超家族,即胱氨酸环家族。hGlyR特别适合进行单通道记录,因此总体上使其成为理解胱氨酸环受体家族的一个模型实验系统。了解胱氨酸环受体中激动剂结合与效能之间的关系,应该会改善我们未来制造特异性激动剂或拮抗剂的前景。然而,目前完整的hGlyR没有高分辨率结构,因此需要进行建模以提供一个物理框架来解释单通道数据。秀丽隐杆线虫的谷氨酸门控氯离子通道的结构与人类hGlyR的序列同一性水平,比以前的模板如乙酰胆碱结合蛋白(AChBP)或细菌通道GLIC和ELIC要高得多。因此,我们构建了hGlyR的模型,并根据先前报道的诱变数据对其进行了验证。我们使用分子动力学来优化模型,并探索激动剂(甘氨酸)和拮抗剂(士的宁)的结合。该模型与先前的数据显示出极好的一致性,但也揭示了一些独特的特征:(i)一个构成结合位点一部分的水分子,这使我们能够解释一些以前难以协调的结果;(ii)甘氨酸激动剂与S129的相互作用;(iii)E211的作用,我们通过新的定点诱变和膜片钳记录证实了这两点。最后,对模拟结果的检查表明,士的宁结合不仅在配体结合域内,而且在跨膜域内,都会诱导转变为一种不同于甘氨酸结合或无配体状态的构象状态。

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