Department of Neuroscience, Physiology and Pharmacology, University College London, Gower Street, London, WC1E 6BT, UK.
Neuropharmacology. 2021 Oct 15;198:108781. doi: 10.1016/j.neuropharm.2021.108781. Epub 2021 Sep 1.
The functional properties of AMPA receptors shape many of the essential features of excitatory synaptic signalling in the brain, including high-fidelity point-to-point transmission and long-term plasticity. Understanding the behaviour and regulation of single AMPAR channels is fundamental in unravelling how central synapses carry, process and store information. There is now an abundance of data on the importance of alternative splicing, RNA editing, and phosphorylation of AMPAR subunits in determining central synaptic diversity. Furthermore, auxiliary subunits have emerged as pivotal players that regulate AMPAR channel properties and add further diversity. Single-channel studies have helped reveal a fascinating picture of the unique behaviour of AMPAR channels - their concentration-dependent single-channel conductance, the basis of their multiple-conductance states, and the influence of auxiliary proteins in controlling many of their gating and conductance properties. Here we summarize basic hallmarks of AMPAR single-channels, in relation to function, diversity and plasticity. We also present data that reveal an unexpected feature of AMPAR sublevel behaviour. This article is part of the special Issue on 'Glutamate Receptors - AMPA receptors'.
AMPA 受体的功能特性塑造了大脑中兴奋性突触信号传递的许多基本特征,包括高保真点对点传递和长期可塑性。了解单个 AMPAR 通道的行为和调节对于揭示中枢突触如何传递、处理和存储信息至关重要。现在有大量数据表明,AMPA 受体亚基的选择性剪接、RNA 编辑和磷酸化在决定中枢突触多样性方面具有重要意义。此外,辅助亚基已成为调节 AMPAR 通道特性并增加多样性的关键因素。单通道研究有助于揭示 AMPAR 通道独特行为的迷人图景——它们的浓度依赖性单通道电导,其多电导状态的基础,以及辅助蛋白在控制其许多门控和电导特性方面的影响。在这里,我们总结了 AMPAR 单通道与功能、多样性和可塑性相关的基本特征。我们还提供了数据,揭示了 AMPAR 亚基水平行为的一个意外特征。本文是“谷氨酸受体-AMPA 受体”特刊的一部分。