首页> 外文期刊>Neuroscience: An International Journal under the Editorial Direction of IBRO >Postsynaptic and extrasynaptic localization of Kv4.2 channels in the mouse hippocampal region, with special reference to targeted clustering at gabaergic synapses.
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Postsynaptic and extrasynaptic localization of Kv4.2 channels in the mouse hippocampal region, with special reference to targeted clustering at gabaergic synapses.

机译:突触后和突触外Kv4.2通道在小鼠海马区的定位,特别涉及针对gaberergy突触的靶向聚类。

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Voltage-dependent potassium (Kv) channels in the CNS are involved in regulation of subthreshold membrane potentials, and thus reception and integration of synaptic signals. Although such features are particularly important for induction of hippocampal synaptic plasticity, relatively little is known about their subcellular localization. Here we analyzed the detailed distribution of Kv4.2 potassium channels in the mouse hippocampal region using confocal and electron microscopy. At the light microscopic level, the Kv4.2 immunoreactivity occurred in a punctate fashion in the whole area of the hippocampal region. In the hippocampus proper, most of the Kv4.2-positive puncta were small, and they were abundant at the dendritic compartments of pyramidal neurons. High-resolution confocal microscopy revealed that there was no apparent association between Kv4.2-positive puncta with major synaptic markers, such as vesicular glutamate transporters and glutamic acid decarboxylase. In the subicular complex and dentategyrus, we encountered large distinct Kv4.2-positive puncta at the perimeter of somata and proximal dendrites of principal cells. These puncta were often in contact with glutamic acid decarboxylase-positive boutons, but showed no apparent association with vesicular glutamate transporters. The glutamic acid decarboxylase-positive boutons apposing to Kv4.2-positive puncta were parvalbumin-positive. Quantitative image analysis showed that approximately half of Kv4.2-positive puncta were closely apposed to glutamic acid decarboxylase-positive boutons in the parasubiculum and dentate gyrus. Electron microscopic examination substantiated the presence of large Kv4.2-positive patches at postsynaptic sites of symmetric synapses and small patches at extrasynaptic sites. No presynaptic terminals were labeled. The present findings indicate targeted clustering of Kv4.2 potassium channels at postsynaptic sites of GABAergic synapses and extrasynaptic sites, and provide some key to understand their role in the hippocampal region.
机译:中枢神经系统中的电压依赖性钾(Kv)通道参与亚阈值膜电位的调节,并因此参与突触信号的接收和整合。尽管这些特征对于诱导海马突触可塑性特别重要,但对其亚细胞定位的了解相对较少。在这里,我们使用共聚焦和电子显微镜分析了小鼠海马区Kv4.2钾通道的详细分布。在光学显微镜下,Kv4.2免疫反应性呈点状出现在整个海马区。在海马体中,大多数Kv4.2阳性小点都很小,并且在锥体神经元的树突区室中丰富。高分辨率共聚焦显微镜显示,Kv4.2阳性小点与主要的突触标记物(如水泡谷氨酸转运蛋白和谷氨酸脱羧酶)之间没有明显的关联。在亚特异性复合体和齿状突中,我们在躯干和主要细胞近端树突的周围遇到了大的明显Kv4.2阳性小点。这些点通常与谷氨酸脱羧酶阳性的按钮接触,但与水泡谷氨酸转运蛋白没有明显的联系。与Kv4.2阳性标点相对应的谷氨酸脱羧酶阳性按钮为小白蛋白阳性。定量图像分析表明,大约一半的Kv4.2阳性小点与副伞和齿状回中的谷氨酸脱羧酶阳性按钮紧密相关。电子显微镜检查证实对称突触的突触后位点存在较大的Kv4.2阳性斑块,而突触外的位点存在较小的斑块。没有标记突触前的终端。本研究结果表明,Kv4.2钾通道在GABA能突触和突触外突触后的位点有针对性地聚集,并提供了一些了解其在海马区中的作用的关键。

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