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Tuning activation of the AMPA-sensitive GluR2 ion channel by genetic adjustment of agonist-induced conformational changes

机译:通过对激动剂引起的构象变化的遗传调节来调节AMPA敏感的GluR2离子通道的激活

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摘要

The (S)-2-amino-3-(3-hydroxy-5-methyl-4-isoxazole) propionic acid (AMPA) receptor discriminates between agonists in terms of binding and channel gating; AMPA is a high-affinity full agonist, whereas kainate is a low-affinity partial agonist. Although there is extensive literature on the functional characterization of partial agonist activity in ion channels, structure-based mechanisms are scarce. Here we investigate the role of Leu-650, a binding cleft residue conserved among AMPA receptors, in maintaining agonist specificity and regulating agonist binding and channel gating by using physiological, x-ray crystallographic, and biochemical techniques. Changing Leu-650 to Thr yields a receptor that responds more potently and efficaciously to kainate and less potently and efficaciously to AMPA relative to the WT receptor. Crystal structures of the Leu-650 to Thr mutant reveal an increase in domain closure in the kainate-bound state and a partially closed and a fully closed conformation in the AMPA-bound form. Our results indicate that agonists can induce a range of conformations in the GluR2 ligand-binding core and that domain closure is directly correlated to channel activation. The partially closed, AMPA-bound conformation of the L650T mutant likely captures the structure of an agonist-bound, inactive state of the receptor. Together with previously solved structures, we have determined a mechanism of agonist binding and subsequent conformational rearrangements.
机译:(S)-2-氨基-3-(3-羟基-5-甲基-4-异恶唑)丙酸(AMPA)受体在结合和通道门控方面区分激动剂。 AMPA是一种高亲和力的全激动剂,而海藻酸酯是一种低亲和力的部分激动剂。尽管关于离子通道中部分激动剂活性的功能表征已有大量文献报道,但基于结构的机制却很少。在这里,我们研究Leu-650(一种在AMPA受体之间保守的结合裂隙残基)在使用生理,X射线晶体学和生化技术维持激动剂特异性和调节激动剂结合和通道门控方面的作用。将Leu-650更改为Thr产生的受体相对于WT受体,对红藻氨酸的反应更有效,更有效,而对AMPA的反应则较不那么有效。 Leu-650 to Thr突变体的晶体结构揭示了在海藻酸盐结合状态下域封闭的增加,以及在AMPA结合形式下部分封闭和完全封闭的构象。我们的结果表明,激动剂可以在GluR2配体结合核心中诱导一系列构象,并且域关闭与通道激活直接相关。 L650T突变体的部分闭合,AMPA结合构象可能捕获了受体激动剂结合的非活性状态的结构。连同以前解决的结构,我们已经确定了激动剂结合和随后的构象重排的机制。

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