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结构和单通道结果表明,配体结合域关闭和打开的速率直接影响AMPA受体门控。

Structural and single-channel results indicate that the rates of ligand binding domain closing and opening directly impact AMPA receptor gating.

作者信息

Zhang Wei, Cho Yoonsang, Lolis Elias, Howe James R

机构信息

Department of Pharmacology, Yale University School of Medicine, New Haven, Connecticut 06520-8066, USA.

出版信息

J Neurosci. 2008 Jan 23;28(4):932-43. doi: 10.1523/JNEUROSCI.3309-07.2008.

Abstract

At most excitatory central synapses, glutamate is released from presynaptic terminals and binds to postsynaptic AMPA receptors, initiating a series of conformational changes that result in ion channel opening. Efficient transmission at these synapses requires that glutamate binding to AMPA receptors results in rapid and near-synchronous opening of postsynaptic receptor channels. In addition, if the information encoded in the frequency of action potential discharge is to be transmitted faithfully, glutamate must dissociate from the receptor quickly, enabling the synapse to discriminate presynaptic action potentials that are spaced closely in time. The current view is that the efficacy of agonists is directly related to the extent to which ligand binding results in closure of the binding domain. For glutamate to dissociate from the receptor, however, the binding domain must open. Previously, we showed that mutations in glutamate receptor subunit 2 that should destabilize the closed conformation not only sped deactivation but also altered the relative efficacy of glutamate and quisqualate. Here we present x-ray crystallographic and single-channel data that support the conclusions that binding domain closing necessarily precedes channel opening and that the kinetics of conformational changes at the level of the binding domain importantly influence ion channel gating. Our findings suggest that the stability of the closed-cleft conformation has been tuned during evolution so that glutamate dissociates from the receptor as rapidly as possible but remains an efficacious agonist.

摘要

在大多数兴奋性中枢突触中,谷氨酸从突触前终末释放并与突触后AMPA受体结合,引发一系列构象变化,导致离子通道开放。这些突触处的高效传递要求谷氨酸与AMPA受体结合能使突触后受体通道快速且近乎同步地开放。此外,如果要忠实地传递动作电位发放频率所编码的信息,谷氨酸必须迅速从受体上解离,使突触能够区分时间上间隔很近的突触前动作电位。目前的观点是,激动剂的效力直接与配体结合导致结合结构域关闭的程度相关。然而,谷氨酸要从受体上解离,结合结构域必须打开。此前,我们发现谷氨酸受体亚基2中那些应使关闭构象不稳定的突变不仅加速了失活,还改变了谷氨酸和quisqualate的相对效力。在此我们展示了X射线晶体学和单通道数据,这些数据支持以下结论:结合结构域的关闭必然先于通道开放,并且结合结构域水平上构象变化的动力学对离子通道门控有重要影响。我们的研究结果表明,在进化过程中,裂隙关闭构象的稳定性已得到调节,以便谷氨酸能尽快从受体上解离,但仍作为一种有效的激动剂。

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