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Functional insights from glutamate receptor ion channel structures

机译:谷氨酸受体离子通道结构的功能见解

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摘要

X-ray crystal structures for the soluble amino-terminal and ligand-binding domains of glutamate receptor ion channels, combined with a 3.6-?- resolution structure of the full-length AMPA receptor GluA2 homotetramer, provide unique insights into the mechanisms of the assembly and function of glutamate receptor ion channels. Increasingly sophisticated biochemical, computational, and electrophysiological experiments are beginning to reveal the mechanism of action of partial agonists and suggest new models for the mechanism of action of allosteric modulators. Newly identified NMDA receptor ligands acting at novel sites offer hope for the development of subtype-selective modulators. The many unresolved issues include the role of the amino-terminal domain in AMPA receptor signaling and the mechanisms by which auxiliary proteins regulate receptor activity. The structural basis for ion permeation and ion channel block also remain areas of uncertainty, and despite substantial progress, molecular dynamics simulations have yet to reveal how glutamate binding opens the ion channel pore.
机译:谷氨酸受体离子通道的可溶性氨基末端和配体结合域的X射线晶体结构,与全长AMPA受体GluA2同四聚体的3.6-α分辨率结构结合在一起,为组装机理提供了独特见解和谷氨酸受体离子通道的功能。越来越复杂的生物化学,计算和电生理实验开始揭示部分激动剂的作用机理,并提出了变构调节剂作用机理的新模型。新发现的作用于新位点的NMDA受体配体为亚型选择性调节剂的发展提供了希望。许多未解决的问题包括氨基末端结构域在AMPA受体信号传导中的作用以及辅助蛋白调节受体活性的机制。离子渗透和离子通道阻滞的结构基础仍然是不确定的领域,尽管取得了重大进展,但分子动力学模拟尚未揭示谷氨酸结合如何打开离子通道孔。

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