Laube Bodo, Schemm Rudolf, Betz Heinrich
Department of Neurochemistry, Max-Planck-Institute for Brain Research, Deutschordenstrasse 46, 60528 Frankfurt, Germany.
Neuropharmacology. 2004 Dec;47(7):994-1007. doi: 10.1016/j.neuropharm.2004.07.041.
Binding of glutamate to ionotropic glutamate receptors occurs within a bilobate binding pocket built from conserved S1 and S2 domains. Using the crystal structure of the binding region of the (RS)-2-amino-3-(3-hydroxy-5-methyl-4-isoxazolyl)-propionic acid (AMPA)-selective GluR2 subunit, we identified determinants of ligand selectivity and efficacy within the glutamate-binding pocket of the NR2B subunit of the N-methyl-D-aspartate (NMDA) receptor by site-directed mutagenesis. Electrophysiological analyses of mutated NR2B polypeptides revealed drastic effects on the affinity of L-glutamate but not of the co-agonist glycine. With seven out of 19 substitutions, we found differences in the potency of the full agonist L-glutamate and the partial agonist NMDA. In particular, substitutions located at the interface between the S1 and S2 domains resulted in changes of agonist efficacy, suggesting a role in transducing the ligand-binding signal. Inhibition by the competitive antagonist D-AP5 was highly sensitive to replacement of residues involved in stabilization of the closed conformation of the binding pocket, consistent with antagonists preventing closure of the binding pocket. In addition, we identified residues predicted to be important for liganding the methyl group of NMDA. Collectively our data describe specific side chain interactions that determine ligand efficacy and pharmacology at the glutamate site of the NMDA receptor.
谷氨酸与离子型谷氨酸受体的结合发生在由保守的S1和S2结构域构成的双叶结合口袋内。利用(RS)-2-氨基-3-(3-羟基-5-甲基-4-异恶唑基)-丙酸(AMPA)选择性GluR2亚基结合区域的晶体结构,我们通过定点诱变确定了N-甲基-D-天冬氨酸(NMDA)受体NR2B亚基谷氨酸结合口袋内配体选择性和效能的决定因素。对突变的NR2B多肽进行电生理分析发现,L-谷氨酸的亲和力受到显著影响,但共激动剂甘氨酸的亲和力不受影响。在19个取代中有7个,我们发现了完全激动剂L-谷氨酸和部分激动剂NMDA效力的差异。特别是,位于S1和S2结构域之间界面处的取代导致激动剂效能发生变化,表明其在转导配体结合信号中发挥作用。竞争性拮抗剂D-AP5的抑制作用对参与稳定结合口袋封闭构象的残基替换高度敏感,这与拮抗剂阻止结合口袋封闭一致。此外,我们确定了预测对结合NMDA甲基基团很重要的残基。我们的数据共同描述了决定NMDA受体谷氨酸位点配体效能和药理学的特定侧链相互作用。