Gill Avinash, Birdsey-Benson Amanda, Jones Brian L, Henderson Leslie P, Madden Dean R
Departments of Biochemistry and Physiology, Dartmouth Medical School, 7200 Vail Building, Hanover, New Hampshire 03755, USA.
Biochemistry. 2008 Dec 30;47(52):13831-41. doi: 10.1021/bi8013196.
AMPA receptors are glutamate-gated ion channels that are essential mediators of synaptic signals in the central nervous system. They form tetramers that are assembled as combinations of subunits GluR1-4, each of which contains a ligand-binding domain (LBD). Crystal structures of the GluR2 LBD have revealed an agonist-binding cleft, which is located between two lobes and which acts like a Venus flytrap. In general, agonist efficacy is correlated with the extent of cleft closure. However, recent observations show that cleft closure is not the sole determinant of the relative efficacy for glutamate receptors. In addition, these studies have focused on the GluR2 subunit, which is the specific target of a physiologically important RNA-editing modification in vivo. We therefore sought to test the generality of the cleft closure-efficacy correlation for other AMPA-R subunits. Here, we present crystal structures of the GluR4(flip) LBD in complex with both full and partial agonists. As for GluR2, both agonists stabilize a closed-cleft conformation, and the partial agonist induces a smaller cleft closure than the full agonist. However, a detailed analysis of LBD-kainate interactions reveals the importance of subtle backbone conformational changes in the ligand-binding pocket in determining the magnitude of agonist-associated conformational changes. Furthermore, the GluR4 subunit exhibits a different correlation between receptor activation and LBD cleft closure than does GluR2.
AMPA受体是谷氨酸门控离子通道,是中枢神经系统中突触信号的重要介导者。它们形成四聚体,由GluR1 - 4亚基组合而成,每个亚基都包含一个配体结合结构域(LBD)。GluR2 LBD的晶体结构揭示了一个激动剂结合裂隙,它位于两个叶之间,其作用类似于捕蝇草。一般来说,激动剂效力与裂隙闭合程度相关。然而,最近的观察结果表明,裂隙闭合并非谷氨酸受体相对效力的唯一决定因素。此外,这些研究主要集中在GluR2亚基上,它是体内一种生理上重要的RNA编辑修饰的特定靶点。因此,我们试图测试其他AMPA - R亚基的裂隙闭合 - 效力相关性的普遍性。在这里,我们展示了与完全激动剂和部分激动剂结合的GluR4(翻转)LBD的晶体结构。与GluR2一样,两种激动剂都稳定了裂隙闭合构象,并且部分激动剂诱导的裂隙闭合比完全激动剂小。然而,对LBD - 海人藻酸相互作用的详细分析揭示了配体结合口袋中细微的主链构象变化在确定激动剂相关构象变化幅度方面的重要性。此外,GluR4亚基在受体激活和LBD裂隙闭合之间表现出与GluR2不同的相关性。