Department of Drug Design and Pharmacology, Faculty of Health and Medical Sciences, University of Copenhagen, Universitetsparken 2, DK-2100 Copenhagen, Denmark.
J Struct Biol. 2012 Oct;180(1):39-46. doi: 10.1016/j.jsb.2012.07.001. Epub 2012 Jul 9.
Conformationally restricted glutamate analogues have been pharmacologically characterized at AMPA and kainate receptors and the crystal structures have been solved of the ligand (2S,1'R,2'S)-2-(2'-carboxycyclobutyl)glycine (CBG-IV) in complex with the ligand binding domains of the AMPA receptor GluA2 and the kainate receptor GluK3. These structures show that CBG-IV interacts with the binding pocket in the same way as (S)-glutamate. The binding affinities reveal that CBG-IV has high affinity at the AMPA and kainate receptor subtypes. Appreciable binding affinity of CBG-IV was not observed at NMDA receptors, where the introduction of the carbocyclic ring is expected to lead to a steric clash with binding site residues. CBG-IV was demonstrated to be an agonist at both GluA2 and the kainate receptor GluK1. CBG-IV showed high affinity binding to GluK1 compared to GluA2, GluK2 and GluK3, which exhibited lower affinity for CBG-IV. The structure of GluA2 LBD and GluK3 LBD in complex with CBG-IV revealed similar binding site interactions to those of (S)-glutamate. No major conformational rearrangements compared to the (S)-glutamate bound conformation were found in GluK3 in order to accommodate CBG-IV, in contrast with GluA2 where a shift in lobe D2 binding site residues occurs, leading to an increased binding cavity volume compared to the (S)-glutamate bound structure.
已在 AMPA 和 kainate 受体上对构象受限的谷氨酸类似物进行了药理学表征,并解析了配体(2S,1'R,2'S)-2-(2'-羧基环丁基)甘氨酸(CBG-IV)与 AMPA 受体 GluA2 和 kainate 受体 GluK3 的配体结合域复合物的晶体结构。这些结构表明,CBG-IV 以与 (S)-谷氨酸相同的方式与结合口袋相互作用。结合亲和力表明,CBG-IV 在 AMPA 和 kainate 受体亚型上具有高亲和力。在 NMDA 受体上未观察到 CBG-IV 的可观结合亲和力,预计引入碳环会导致与结合位点残基发生空间冲突。CBG-IV 被证明是 GluA2 和 kainate 受体 GluK1 的激动剂。与 GluA2、GluK2 和 GluK3 相比,CBG-IV 对 GluK1 具有高亲和力结合,后三者对 CBG-IV 的亲和力较低。与 CBG-IV 复合的 GluA2 LBD 和 GluK3 LBD 的结构揭示了与 (S)-谷氨酸相似的结合位点相互作用。与 GluA2 不同,为了容纳 CBG-IV,GluK3 中未发现与 (S)-谷氨酸结合构象相比的主要构象重排,在 GluA2 中,D2 结合位点残基发生位移,导致结合腔体积增加与 (S)-谷氨酸结合结构相比。