Department of Medicinal Chemistry, University of Copenhagen, Universitetsparken 2, DK-2100 Copenhagen, Denmark.
J Struct Biol. 2011 Dec;176(3):307-14. doi: 10.1016/j.jsb.2011.08.014. Epub 2011 Sep 1.
Ionotropic glutamate receptors (iGluRs) are involved in excitatory signal transmission throughout the central nervous system and their malfunction is associated with various health disorders. GluK3 is a subunit of iGluRs, belonging to the subfamily of kainate receptors (GluK1-5). Several crystal structures of GluK1 and GluK2 ligand binding domains have been determined in complex with agonists and antagonists. However, little is known about the molecular mechanisms underlying GluK3 ligand binding properties and no compounds displaying reasonable selectivity towards GluK3 are available today. Here, we present the first X-ray crystal structure of the ligand binding domain of GluK3 in complex with glutamate, determined to 1.6Å resolution. The structure reveals a conserved glutamate binding mode, characteristic for iGluRs, and a water molecule network in the glutamate binding site similar to that seen in GluK1. In GluK3, a slightly lower degree of domain closure around glutamate is observed compared to most other kainate receptor structures with glutamate. The volume of the GluK3 glutamate binding cavity was found to be of intermediate size between those of GluK1 and GluK2. The residues in GluK3 contributing to the subfamily differences in the binding sites are primarily: Thr520, Ala691, Asn722, Leu736 and Thr742. The GluK3 ligand binding domain seems to be less stabilized through interlobe interactions than GluK1 and this may contribute to the faster desensitization kinetics of GluK3.
离子型谷氨酸受体 (iGluRs) 参与中枢神经系统中的兴奋性信号传递,其功能障碍与各种健康障碍有关。GluK3 是 iGluRs 的亚基,属于 kainate 受体 (GluK1-5) 亚家族。已经确定了 GluK1 和 GluK2 配体结合结构域与激动剂和拮抗剂复合物的几个晶体结构。然而,对于 GluK3 配体结合特性的分子机制知之甚少,并且目前没有显示出对 GluK3 具有合理选择性的化合物。在这里,我们展示了 GluK3 配体结合结构域与谷氨酸复合物的第一个 X 射线晶体结构,分辨率为 1.6Å。该结构揭示了一种保守的谷氨酸结合模式,这是 iGluRs 的特征,并且在谷氨酸结合位点中存在水分子网络,类似于在 GluK1 中看到的那样。与大多数具有谷氨酸的 kainate 受体结构相比,在 GluK3 中观察到谷氨酸周围的结构域闭合程度略低。GluK3 谷氨酸结合腔的体积被发现介于 GluK1 和 GluK2 之间。在结合位点中导致亚家族差异的 GluK3 残基主要是:Thr520、Ala691、Asn722、Leu736 和 Thr742。GluK3 的配体结合结构域似乎不如 GluK1 那样通过叶间相互作用稳定,这可能导致 GluK3 的脱敏动力学更快。