首页> 美国卫生研究院文献>PLoS Clinical Trials >Boosting of Synaptic Potentials and Spine Ca Transients by the Peptide Toxin SNX-482 Requires Alpha-1E-Encoded Voltage-Gated Ca Channels
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Boosting of Synaptic Potentials and Spine Ca Transients by the Peptide Toxin SNX-482 Requires Alpha-1E-Encoded Voltage-Gated Ca Channels

机译:肽毒素SNX-482增强突触电位和脊柱Ca瞬变需要Alpha-1E编码的电压门控Ca通道

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摘要

The majority of glutamatergic synapses formed onto principal neurons of the mammalian central nervous system are associated with dendritic spines. Spines are tiny protuberances that house the proteins that mediate the response of the postsynaptic cell to the presynaptic release of glutamate. Postsynaptic signals are regulated by an ion channel signaling cascade that is active in individual dendritic spines and involves voltage-gated calcium (Ca) channels, small conductance (SK)-type Ca-activated potassium channels, and NMDA-type glutamate receptors. Pharmacological studies using the toxin SNX-482 indicated that the voltage-gated Ca channels that signal within spines to open SK channels belong to the class CaV2.3, which is encoded by the Alpha-1E pore-forming subunit. In order to specifically test this conclusion, we examined the effects of SNX-482 on synaptic signals in acute hippocampal slices from knock-out mice lacking the Alpha-1E gene. We find that in these mice, application of SNX-482 has no effect on glutamate-uncaging evoked synaptic potentials and Ca influx, indicating that that SNX-482 indeed acts via the Alpha-1E-encoded CaV2.3 channel.
机译:形成在哺乳动物中枢神经系统主要神经元上的大多数谷氨酸能突触与树突棘相关。棘是微小的突起,其中容纳了介导突触后细胞对突触前谷氨酸释放反应的蛋白质。突触后信号由离子通道信号级联调节,该信号通道在单个树突棘中活跃,并涉及电压门控钙(Ca)通道,小电导(SK)型Ca活化钾通道和NMDA型谷氨酸受体。使用毒素SNX-482进行的药理研究表明,在棘突内发出信号以打开SK通道的电压门控Ca通道属于CaV2.3类,由Alpha-1E孔形成亚基编码。为了具体检验该结论,我们检查了SNX-482对缺乏Alpha-1E基因的基因敲除小鼠的急性海马切片中突触信号的影响。我们发现,在这些小鼠中,SNX-482的应用对谷氨酸释放的诱发突触电位和Ca内流没有影响,这表明SNX-482确实通过Alpha-1E编码的CaV2.3通道起作用。

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