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海马苔藓纤维终扣中电压门控性钠离子通道对突触前动作电位的放大作用。

Presynaptic action potential amplification by voltage-gated Na+ channels in hippocampal mossy fiber boutons.

作者信息

Engel Dominique, Jonas Peter

机构信息

Physiologisches Institut der Universität Freiburg, Hermann-Herder-Strasse 7, D-79104 Freiburg, Germany.

出版信息

Neuron. 2005 Feb 3;45(3):405-17. doi: 10.1016/j.neuron.2004.12.048.


DOI:10.1016/j.neuron.2004.12.048
PMID:15694327
Abstract

Action potentials in central neurons are initiated near the axon initial segment, propagate into the axon, and finally invade the presynaptic terminals, where they trigger transmitter release. Voltage-gated Na(+) channels are key determinants of excitability, but Na(+) channel density and properties in axons and presynaptic terminals of cortical neurons have not been examined yet. In hippocampal mossy fiber boutons, which emerge from parent axons en passant, Na(+) channels are very abundant, with an estimated number of approximately 2000 channels per bouton. Presynaptic Na(+) channels show faster inactivation kinetics than somatic channels, suggesting differences between subcellular compartments of the same cell. Computational analysis of action potential propagation in axon-multibouton structures reveals that Na(+) channels in boutons preferentially amplify the presynaptic action potential and enhance Ca(2+) inflow, whereas Na(+) channels in axons control the reliability and speed of propagation. Thus, presynaptic and axonal Na(+) channels contribute differentially to mossy fiber synaptic transmission.

摘要

中枢神经元的动作电位在轴突起始段附近产生,传入轴突,最终侵入突触前终末,在那里触发递质释放。电压门控钠通道是兴奋性的关键决定因素,但皮质神经元轴突和突触前终末的钠通道密度及特性尚未得到研究。在海马苔藓纤维终扣中,其从母轴突上呈串珠状发出,钠通道非常丰富,估计每个终扣约有2000个通道。突触前钠通道的失活动力学比胞体通道更快,这表明同一细胞的亚细胞区室之间存在差异。对轴突-多终扣结构中动作电位传播的计算分析表明,终扣中的钠通道优先放大突触前动作电位并增强钙内流,而轴突中的钠通道则控制传播的可靠性和速度。因此,突触前和轴突的钠通道对苔藓纤维突触传递的贡献不同。

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Presynaptic action potential amplification by voltage-gated Na+ channels in hippocampal mossy fiber boutons.

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[5]
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