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钠离子通道的超临界密度确保了 GABA 能中间神经元轴突中的快速信号传递。

A supercritical density of Na(+) channels ensures fast signaling in GABAergic interneuron axons.

机构信息

IST Austria, Klosterneuburg, Austria.

出版信息

Nat Neurosci. 2014 May;17(5):686-93. doi: 10.1038/nn.3678. Epub 2014 Mar 23.

Abstract

Fast-spiking, parvalbumin-expressing GABAergic interneurons, a large proportion of which are basket cells (BCs), have a key role in feedforward and feedback inhibition, gamma oscillations and complex information processing. For these functions, fast propagation of action potentials (APs) from the soma to the presynaptic terminals is important. However, the functional properties of interneuron axons remain elusive. We examined interneuron axons by confocally targeted subcellular patch-clamp recording in rat hippocampal slices. APs were initiated in the proximal axon ~20 μm from the soma and propagated to the distal axon with high reliability and speed. Subcellular mapping revealed a stepwise increase of Na(+) conductance density from the soma to the proximal axon, followed by a further gradual increase in the distal axon. Active cable modeling and experiments with partial channel block revealed that low axonal Na(+) conductance density was sufficient for reliability, but high Na(+) density was necessary for both speed of propagation and fast-spiking AP phenotype. Our results suggest that a supercritical density of Na(+) channels compensates for the morphological properties of interneuron axons (small segmental diameter, extensive branching and high bouton density), ensuring fast AP propagation and high-frequency repetitive firing.

摘要

快速放电、表达小白蛋白的 GABA 能中间神经元,其中很大一部分是篮状细胞 (BCs),在传入和反馈抑制、γ 振荡和复杂信息处理中具有关键作用。对于这些功能,动作电位 (AP) 从胞体快速传播到突触前末梢非常重要。然而,中间神经元轴突的功能特性仍然难以捉摸。我们通过在大鼠海马切片中进行共聚焦靶向亚细胞膜片钳记录来检查中间神经元轴突。AP 起始于距胞体约 20 μm 的近侧轴突,并以高可靠性和速度传播到远侧轴突。亚细胞映射显示,从胞体到近侧轴突的钠 (Na+) 电导密度呈逐步增加,然后在远侧轴突中进一步逐渐增加。主动电缆建模和部分通道阻断实验表明,低轴突 Na+电导密度足以保证可靠性,但高 Na+密度对于传播速度和快速放电 AP 表型都是必要的。我们的结果表明,超临界密度的 Na+ 通道补偿了中间神经元轴突的形态特性(小节段直径、广泛分支和高末梢密度),确保了快速 AP 传播和高频重复放电。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/17c7/4286295/a76fe0f3dc0c/emss-57103-f0001.jpg

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