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A 型钾通道在主嗅球不同细胞类型上的独特聚类。

Unique clustering of A-type potassium channels on different cell types of the main olfactory bulb.

作者信息

Kollo Mihaly, Holderith Noémi, Antal Miklós, Nusser Zoltan

机构信息

Laboratory of Cellular Neurophysiology, Institute of Experimental Medicine, Budapest, Hungary.

出版信息

Eur J Neurosci. 2008 Apr;27(7):1686-99. doi: 10.1111/j.1460-9568.2008.06141.x. Epub 2008 Mar 25.

Abstract

Theoretical and functional studies predicted a highly non-uniform distribution of voltage-gated ion channels on the neuronal surface. This was confirmed by recent immunolocalization experiments for Na+, Ca2+, hyperpolarization activated mixed cation and K+ channels. These experiments also indicated that some K+ channels were clustered in synaptic or non-synaptic membrane specializations. Here we analysed the subcellular distribution of Kv4.2 and Kv4.3 subunits in the rat main olfactory bulb at high resolution to address whether clustering characterizes their distribution, and whether they are concentrated in synaptic or non-synaptic junctions. The cell surface distribution of the Kv4.2 and Kv4.3 subunits is highly non-uniform. Strong Kv4.2 subunit-immunopositive clusters were detected in intercellular junctions made by mitral, external tufted and granule cells (GCs). We also found Kv4.3 subunit-immunopositive clusters in periglomerular (PGC), deep short-axon and GCs. In the juxtaglomerular region some calretinin-immunopositive glial cells enwrap neighboring PGC somata in a cap-like manner. Kv4.3 subunit clusters are present in the cap membrane that directly contacts the PGC, but not the one that faces the neuropil. In membrane specializations established by members of the same cell type, K+ channels are enriched in both membranes, whereas specializations between different cell types contain a high density of channels asymmetrically. None of the K+ channel-rich junctions showed any of the ultrastructural features of known chemical synapses. Our study provides evidence for highly non-uniform subcellular distributions of A-type K+ channels and predicts their involvements in novel forms of intercellular communication in the olfactory pathway.

摘要

理论和功能研究预测,电压门控离子通道在神经元表面的分布极不均匀。最近针对钠、钙、超极化激活混合阳离子和钾通道的免疫定位实验证实了这一点。这些实验还表明,一些钾通道聚集在突触或非突触膜特化结构中。在此,我们以高分辨率分析了大鼠主嗅球中Kv4.2和Kv4.3亚基的亚细胞分布,以探讨聚集是否为其分布特征,以及它们是否集中在突触或非突触连接中。Kv4.2和Kv4.3亚基的细胞表面分布极不均匀。在由二尖瓣细胞、外侧丛状细胞和颗粒细胞形成的细胞间连接中检测到强Kv4.2亚基免疫阳性簇。我们还在球周细胞、深层短轴突细胞和颗粒细胞中发现了Kv4.3亚基免疫阳性簇。在近球区,一些钙视网膜蛋白免疫阳性神经胶质细胞以帽状方式包裹相邻的球周细胞胞体。Kv4.3亚基簇存在于直接接触球周细胞的帽状膜中,而不存在于面向神经毡的膜中。在由同一细胞类型的成员建立的膜特化结构中,钾通道在两个膜中均富集,而不同细胞类型之间的特化结构则不对称地含有高密度的通道。富含钾通道的连接均未显示出已知化学突触的任何超微结构特征。我们的研究为A型钾通道的高度不均匀亚细胞分布提供了证据,并预测它们参与嗅觉通路中新型细胞间通讯形式。

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