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首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >A role for extracellular Na+ in the channel gating of native and recombinant kainate receptors.
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A role for extracellular Na+ in the channel gating of native and recombinant kainate receptors.

机译:细胞外Na +在天然和重组海藻酸盐受体通道门控中的作用。

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摘要

Ionotropic glutamate receptors of the kainate and AMPA subtypes share a number of structural features, both topographical and in terms of stoichiometry. In addition, AMPA and kainate receptors share similar pharmacological and biophysical properties in that they are activated by common agonists and display rapid activation and desensitization characteristics. However, we show here that in contrast to AMPA receptor-mediated responses (native or recombinant GluR3 receptor), the response of native and recombinant (GluR6) kainate receptors to glutamate was drastically reduced in the absence of extracellular Na+ (i.e., when replaced by Cs+). Removal of Na+ increases the rate of desensitization, indicating that external Na+ modulates channel gating. Whereas the size of the substituting cation is important in mimicking the action of Na+ (Li+>K+>Cs+), modulation was voltage independent. These results indicate the existence of different gating mechanisms for AMPA and kainate receptors. By using chimeric AMPA-kainate receptors derived from GluR3 and GluR6, we have identified a key residue in the S2 segment of GluR6 (M770) that is largely responsible for the sensitivity of the receptor to external Na+. Thus, these results show the existence of a specific kainate receptor gating mechanism that requires external Na+ to be operative.
机译:海藻酸盐和AMPA亚型的离子型谷氨酸受体具有许多结构特征,无论是在地形学上还是在化学计量方面。此外,AMPA和海藻酸酯受体具有相似的药理和生物物理特性,因为它们被常见的激动剂激活并表现出快速的激活和脱敏特性。但是,我们在这里表明,与AMPA受体介导的反应(天然或重组GluR3受体)相比,天然和重组(GluR6)海藻酸盐受体对谷氨酸的反应在没有细胞外Na +的情况下(即,当被替换为Na +时)急剧降低。 Cs +)。 Na +的去除增加了脱敏的速率,表明外部Na +调节通道门控。取代阳离子的大小在模仿Na +(Li +> K +> Cs +)的作用中很重要,而调制与电压无关。这些结果表明,AMPA和海藻酸盐受体存在不同的门控机制。通过使用衍生自GluR3和GluR6的嵌合AMPA-海藻酸酯受体,我们在GluR6(M770)的S2片段中鉴定了一个关键残基,该残基主要负责受体对外部Na +的敏感性。因此,这些结果表明存在需要外部Na +起作用的特定的红藻氨酸受体门控机制。

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