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银杏内酯 X 是一种强阴离子型 Cys 环受体拮抗剂,对甘氨酸受体具有独特的选择性。

Ginkgolide X is a potent antagonist of anionic Cys-loop receptors with a unique selectivity profile at glycine receptors.

机构信息

Department of Medicinal Chemistry, Faculty of Pharmaceutical Sciences, University of Copenhagen, Universitetsparken 2, DK-2100 Copenhagen, Denmark.

Department of Medicinal Chemistry, Faculty of Pharmaceutical Sciences, University of Copenhagen, Universitetsparken 2, DK-2100 Copenhagen, Denmark.

出版信息

J Biol Chem. 2010 Mar 26;285(13):10141-10153. doi: 10.1074/jbc.M109.079319. Epub 2010 Jan 27.

Abstract

The novel ginkgolide analog ginkgolide X was characterized functionally at human glycine and gamma-aminobutyric acid type A receptors (GlyRs and GABA(A)Rs, respectively) in the fluorescence-based FLIPR(TM) Membrane Potential assay. The compound inhibited the signaling of all GABA(A)R subtypes included in the study with high nanomolar/low micromolar IC(50) values, except the rho 1 receptor at which it was a significantly weaker antagonist. Ginkgolide X also displayed high nanomolar/low micromolar IC(50) values at the homomeric alpha1 and alpha2 GlyRs, whereas it was inactive at the heteromeric alpha 1 beta and alpha 2 beta subtypes at concentrations up to 300 microm. Thus, the functional properties of the compound were significantly different from those of the naturally occurring ginkgolides A, B, C, J, and M but similar to those of picrotoxin. In a mutagenesis study the 6' M2 residues in the GlyR ion channel were identified as the primary molecular determinant of the selectivity profile of ginkgolide X, and a 6' M2 ring consisting of five Thr residues was found to be of key importance for its activity at the GABA(A)R. Conformational analysis and docking of low-energy conformations of the native ginkgolide A and ginkgolide X into a alpha1 GlyR homology model revealed two distinct putative binding sites formed by the 6' M2 residues together with the 2' residues and the 10' and 13' residues, respectively. Thus, we propose that the distinct functionalities of ginkgolide X compared with the other ginkgolides could arise from different flexibility and thus different binding modes to the ion channel of the anionic Cys-loop receptor.

摘要

新型银杏内酯类似物银杏内酯 X 在基于荧光的 FLIPR(TM)膜电位测定法中,在人甘氨酸和γ-氨基丁酸 A 型受体(分别为 GlyRs 和 GABA(A)Rs)上进行了功能表征。该化合物以高纳摩尔/低微摩尔 IC(50)值抑制了研究中包含的所有 GABA(A)R 亚型的信号,除了 rho 1 受体,它是一个明显较弱的拮抗剂。银杏内酯 X 对同型 alpha1 和 alpha2 GlyRs 也表现出高纳摩尔/低微摩尔 IC(50)值,而在浓度高达 300 微摩尔时,对异源 alpha 1 beta 和 alpha 2 beta 亚型则无活性。因此,该化合物的功能特性与天然银杏内酯 A、B、C、J 和 M 明显不同,但与苦毒蕈碱相似。在一项诱变研究中,GlyR 离子通道中的 6' M2 残基被确定为银杏内酯 X 选择性特征的主要分子决定因素,并且发现由五个 Thr 残基组成的 6' M2 环对于其在 GABA(A)R 上的活性至关重要。构象分析和将天然银杏内酯 A 和银杏内酯 X 的低能量构象对接到 alpha1 GlyR 同源模型中,揭示了由 6' M2 残基与 2' 残基以及 10' 和 13' 残基分别形成的两个独特的假定结合位点。因此,我们提出,银杏内酯 X 与其他银杏内酯相比具有不同的功能特性可能源于不同的灵活性,从而导致其与阴离子 Cys 环受体的离子通道具有不同的结合模式。

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