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阳离子而非阴离子调节 kainate 受体的反应性。

Cations but not anions regulate the responsiveness of kainate receptors.

机构信息

Department of Pharmacology and Therapeutics, McGill University, Montréal, Québec, Canada H3G OB1.

出版信息

J Neurosci. 2011 Feb 9;31(6):2136-44. doi: 10.1523/JNEUROSCI.4314-10.2011.

Abstract

Kainate-selective ionotropic glutamate receptors are unique among ligand-gated ion channels in their obligate requirement of external anions and cations for activation. Although it is established that the degree of kainate receptor (KAR) activation is shaped by the chemical nature of the agonist molecule, the possible complementary role of external ions has yet to be examined. Here we show that external cations but not anions regulate the responsiveness to a range of full and partial agonists acting on rat GluK2 receptors. This observation is unexpected as previous work has assumed anions and cations affect KARs in an identical manner through functionally coupled binding sites. However, our data demonstrate that anion- and cation-binding pockets behave discretely. We suggest cations uniquely regulate a pregating or flipping step that impacts the closed-cleft stability of the agonist-binding domain (ABD). This model departs from a previous proposal that KAR agonist efficacy is governed by the degree of closure elicited in the ABD by ligand binding. Our findings are, however, in line with recent studies on Cys-loop ligand-gated ion channels suggesting that the "flipping" mechanism has been conserved by structurally diverse ligand-gated ion channel families as a common means of regulating neurotransmitter behavior.

摘要

红藻氨酸型离子型谷氨酸受体在其配体门控离子通道中是独特的,因为它们的激活需要外部阴离子和阳离子的强制性要求。尽管已经确定红藻氨酸受体 (KAR) 的激活程度取决于激动剂分子的化学性质,但外部离子的可能互补作用尚未得到检验。在这里,我们表明外部阳离子而不是阴离子调节了一系列全激动剂和部分激动剂对大鼠 GluK2 受体的反应性。这一观察结果出乎意料,因为以前的工作假设阴离子和阳离子通过功能耦合的结合位点以相同的方式影响 KAR。然而,我们的数据表明阴离子和阳离子结合口袋的行为是离散的。我们认为阳离子独特地调节了一个预门控或翻转步骤,该步骤影响了激动剂结合域 (ABD) 的闭裂缝稳定性。该模型偏离了以前的假设,即 KAR 激动剂效力由配体结合在 ABD 中引起的关闭程度决定。然而,我们的发现与最近关于 Cys 环配体门控离子通道的研究一致,表明“翻转”机制已被结构多样的配体门控离子通道家族保守,作为调节神经递质行为的共同手段。

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Ion-dependent gating of kainate receptors.离子依赖性门控的红藻氨酸受体。
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