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α-氨基酸连接的喹喔啉-2,3-二酮类似物在谷氨酸受体亚型 GluK1 上的结合模式。

Binding mode of an α-amino acid-linked quinoxaline-2,3-dione analogue at glutamate receptor subtype GluK1.

出版信息

ACS Chem Neurosci. 2015 Jun 17;6(6):845-54. doi: 10.1021/acschemneuro.5b00038. Epub 2015 Apr 9.

Abstract

Two α-amino acid-functionalized quinoxalines, 1a (CNG-10301) and 1b (CNG-10300), of a quinoxaline moiety coupled to an amino acid moiety were designed, synthesized, and characterized pharmacologically. While 1a displayed low affinity at native AMPA, KA, and NMDA receptors, and at homomeric GluK1,3 receptors, the affinity for GluK2 was in the midmicromolar range (Ki = 136 μM), 1b displayed low to midmicromolar range binding affinity at all the iGluRs (Ki = 9-126 μM). In functional experiments (outside-out patches excised from transfected HEK293T cells), 100 μM 1a partially blocked GluK1 (33% peak response), while GluK2 was unaffected (96% peak response). Furthermore, 1a was shown not to be an agonist at GluK1 and GluK2 at 100 μM. On the other hand, 100 μM 1b fully antagonized GluK1 (8% peak response) but only partially blocked GluK2 (33% peak response). An X-ray structure at 2.3 Å resolution of 1b in the GluK1-LBD (ligand-binding domain) disclosed an unexpected binding mode compared to the predictions made during the design phase; the quinoxaline moiety remains to act as an amino acid bioisostere, but the amino acid moiety is oriented into a new area within the GluK1 receptor. The structure of the GluK1-LBD with 1b showed a large variation in domain openings of the three molecules from 25° to 49°, demonstrating that the GluK1-LBD is capable of undergoing major domain movements.

摘要

两种α-氨基酸功能化的喹喔啉,1a(CNG-10301)和 1b(CNG-10300),喹喔啉部分与氨基酸部分偶联,被设计、合成并进行了药理学表征。虽然 1a 在天然 AMPA、KA 和 NMDA 受体以及同型 GluK1、3 受体上显示出低亲和力,但对 GluK2 的亲和力处于中微摩尔范围(Ki = 136 μM),1b 在所有 iGluRs 上显示出低至中微摩尔范围的结合亲和力(Ki = 9-126 μM)。在功能实验(从转染的 HEK293T 细胞中提取的外侧小片)中,100 μM 1a 部分阻断 GluK1(33%峰值反应),而 GluK2 不受影响(96%峰值反应)。此外,在 100 μM 时,1a 不被证明是 GluK1 和 GluK2 的激动剂。另一方面,100 μM 1b 完全拮抗 GluK1(8%峰值反应)但仅部分阻断 GluK2(33%峰值反应)。在 2.3 Å 分辨率下,1b 与 GluK1-LBD(配体结合域)的 X 射线结构显示与设计阶段的预测相比,存在一种意外的结合模式;喹喔啉部分仍然充当氨基酸生物等排体,但氨基酸部分定向到 GluK1 受体的新区域。与 1b 结合的 GluK1-LBD 结构显示三个分子的结构域开口有很大的变化,从 25°到 49°,这表明 GluK1-LBD 能够进行主要的结构域运动。

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