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Two distinct pools of large-conductance calcium-activated potassium channels in the somatic plasma membrane of central principal neurons

机译:中枢主要神经元的体细胞质膜中的两个不同的大传导钙激活钾通道池

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摘要

Although nerve cell membranes are often assumed to be uniform with respect to electrical properties, there is increasing evidence for compartmentalization into subdomains with heterogeneous impacts on the overall cell function. Such microdomains are characterized by specific sets of proteins determining their functional properties. Recently, clustering of large-conductance calcium-activated potassium (BKCa) channels was shown at sites of subsurface membrane cisterns in cerebellar Purkinje cells (PC), where they likely participate in building a subcellular signaling unit, the 'PLasmERosome'. By applying SDS-digested freeze-fracture replica labeling (SDS-FRL) and postembedding immunogold electron microscopy, we have now studied the spatial organization of somatic BKCa channels in neocortical layer 5 pyramidal neurons, principal neurons of the central and basolateral amygdaloid nuclei, hippocampal pyramidal neurons and dentate gyrus (DG) granule cells to establish whether there is a common organizational principle in the distribution of BKCa channels in central principal neurons. In all cell types analyzed, somatic BKCa channels were found to be non-homogenously distributed in the plasma membrane, forming two pools of channels with one pool consisting of clustered channels and the other of scattered channels in the extrasynaptic membrane. Quantitative analysis by means of SDS-FRL revealed that about two-thirds of BKCa channels belong to the scattered pool and about one-third to the clustered pool in principal cell somata. Overall densities of channels in both pools differed in the different cell types analyzed, although being considerably lower compared to cerebellar PC. Postembedding immunogold labeling revealed association of clustered channels with subsurface membrane cisterns and confirmed extrasynaptic localization of scattered channels. This study indicates a common organizational principle for somatic BKCa channels in central principal neurons with the formation of a clustered and a scattered pool of channels, and a cell-type specific density of this channel type.
机译:尽管通常认为神经细胞膜在电特性方面是均匀的,但越来越多的证据表明将其分隔为亚域对细胞的整体功能有异质影响。这种微区的特征在于确定其功能特性的特定蛋白质组。最近,在小脑浦肯野细胞(PC)的地下膜储水池的位置显示了大电导钙激活的钾(BKCa)通道的聚集,它们可能参与构建亚细胞信号单元“ PLasmERosome”。通过应用SDS消化的冷冻断裂复制标记(SDS-FRL)和包埋后免疫金电子显微镜,我们现在研究了新皮层5锥体神经元,中央和基底外侧杏仁核,海马的主要神经元中体细胞BKCa通道的空间组织。锥体神经元和齿状回(DG)颗粒细胞,以确定在中央主要神经元的BKCa通道分布中是否存在共同的组织原理。在所有分析的细胞类型中,发现体细胞BKCa通道在质膜中非均匀分布,形成两个通道池,其中一个池由簇状通道组成,另一个由突触外膜中的分散通道组成。通过SDS-FRL进行的定量分析显示,在主要细胞体细胞中,约有三分之二的BKCa通道属于分散池,而约三分之一属于簇集池。尽管与小脑PC相比要低得多,但两个池中通道的总密度在所分析的不同细胞类型中有所不同。包埋后的免疫金标记显示簇状通道与地下膜储水池相关联,并证实了散在通道的突触外定位。这项研究表明了中央主要神经元中体细胞BKCa通道的共同组织原理,即形成簇状和分散的通道池,以及该通道类型的细胞类型比密度。

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