Fenwick Michael K, Oswald Robert E
Department of Molecular Medicine, Cornell University, Ithaca, NY 14853, USA.
J Mol Biol. 2008 May 2;378(3):673-85. doi: 10.1016/j.jmb.2008.03.012. Epub 2008 Mar 14.
Glutamate receptors mediate neuronal intercommunication in the central nervous system by coupling extracellular neurotransmitter-receptor interactions to ion channel conductivity. To gain insight into structural and dynamical factors that underlie this coupling, solution NMR experiments were performed on the bilobed ligand-binding core of glutamate receptor 2 in complexes with a set of willardiine partial agonists. These agonists are valuable for studying structure-function relationships because their 5-position substituent size is correlated with ligand efficacy and extent of receptor desensitization, whereas the substituent electronegativity is correlated with ligand potency. NMR results show that the protein backbone amide chemical shift deviations correlate mainly with efficacy and extent of desensitization. Pronounced deviations occur at specific residues in the ligand-binding site and in the two helical segments that join the lobes by a disulfide bond. Experiments detecting conformational exchange show that micro- to millisecond timescale motions also occur near the disulfide bond and vary largely with efficacy and extent of desensitization. These results thus identify regions displaying structural and dynamical dissimilarity arising from differences in ligand-protein interactions and lobe closure that may play a critical role in receptor response. Furthermore, measures of line broadening and conformational exchange for a portion of the ligand-binding site correlate with ligand EC(50) data. These results do not have any correlate in the currently available crystal structures and thus provide a novel view of ligand-binding events that may be associated with agonist potency differences.
谷氨酸受体通过将细胞外神经递质 - 受体相互作用与离子通道电导率偶联,介导中枢神经系统中的神经元相互通讯。为了深入了解这种偶联背后的结构和动力学因素,对谷氨酸受体2的双叶配体结合核心与一组威拉地菌素部分激动剂形成的复合物进行了溶液核磁共振实验。这些激动剂对于研究结构 - 功能关系很有价值,因为它们的5位取代基大小与配体效力和受体脱敏程度相关,而取代基的电负性与配体亲和力相关。核磁共振结果表明,蛋白质主链酰胺化学位移偏差主要与效力和脱敏程度相关。在配体结合位点以及通过二硫键连接叶的两个螺旋段中的特定残基处出现明显偏差。检测构象交换的实验表明,在二硫键附近也发生微秒到毫秒时间尺度的运动,并且在很大程度上随效力和脱敏程度而变化。因此,这些结果确定了由于配体 - 蛋白质相互作用和叶闭合差异而显示出结构和动力学差异的区域,这些区域可能在受体反应中起关键作用。此外,配体结合位点一部分的线宽和构象交换测量与配体EC(50)数据相关。这些结果在目前可用的晶体结构中没有任何对应物,因此提供了一个可能与激动剂效力差异相关的配体结合事件的新观点。