首页> 美国卫生研究院文献>The Journal of Neuroscience >Quantitative Localization of Cav2.1 (P/Q-Type) Voltage-Dependent Calcium Channels in Purkinje Cells: Somatodendritic Gradient and Distinct Somatic Coclustering with Calcium-Activated Potassium Channels
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Quantitative Localization of Cav2.1 (P/Q-Type) Voltage-Dependent Calcium Channels in Purkinje Cells: Somatodendritic Gradient and Distinct Somatic Coclustering with Calcium-Activated Potassium Channels

机译:Purkinje细胞中Cav2.1(P / Q型)电压依赖性钙通道的定量定位:体突波梯度和钙激活钾通道的不同体细胞聚集。

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摘要

P/Q-type voltage-dependent calcium channels play key roles in transmitter release, integration of dendritic signals, generation of dendritic spikes, and gene expression. High intracellular calcium concentration transient produced by these channels is restricted to tens to hundreds of nanometers from the channels. Therefore, precise localization of these channels along the plasma membrane was long sought to decipher how each neuronal cell function is controlled. Here, we analyzed the distribution of Cav2.1 subunit of the P/Q-type channel using highly sensitive SDS-digested freeze-fracture replica labeling in the rat cerebellar Purkinje cells. The labeling efficiency was such that the number of immunogold particles in each parallel fiber active zone was comparable to that of functional channels calculated from previous reports. Two distinct patterns of Cav2.1 distribution, scattered and clustered, were found in Purkinje cells. The scattered Cav2.1 had a somatodendritic gradient with the density of immunogold particles increasing 2.5-fold from soma to distal dendrites. The other population with 74-fold higher density than the scattered particles was found within clusters of intramembrane particles on the P-face of soma and primary dendrites. Both populations of Cav2.1 were found as early as P3 and increased in the second postnatal week to a mature level. Using double immunogold labeling, we found that virtually all of the Cav2.1 clusters were colocalized with two types of calcium-activated potassium channels, BK and SK2, with the nearest neighbor distance of ∼40 nm. Calcium nanodomain created by the opening of Cav2.1 channels likely activates the two channels that limit the extent of depolarization.
机译:P / Q型电压依赖性钙离子通道在递质释放,树突状信号整合,树突状尖峰的产生和基因表达中起着关键作用。这些通道产生的高细胞内钙浓度瞬态被限制在距通道数十至数百纳米的位置。因此,长期寻求这些通道沿质膜的精确定位,以破译如何控制每个神经元细胞功能。在这里,我们使用大鼠小脑浦肯野细胞中高度敏感的SDS消化的冷冻断裂复制标记,分析了P / Q型通道的Cav2.1亚基的分布。标记效率使得每个平行纤维活性区中的免疫金颗粒数量与根据先前报告计算的功能通道相当。在浦肯野细胞中发现了两种不同的Cav2.1分布模式,即分散的和聚集的。分散的Cav2.1具有体树突状梯度,从体到远端树突的免疫金颗粒密度增加2.5倍。在体细胞和初生树突的P面上,在膜内颗粒簇中发现了另一个密度比分散颗粒高74倍的种群。 Cav2.1的两个种群均早于P3被发现,并在产后第二周增加到成熟水平。使用双重免疫金标记,我们发现实际上所有Cav2.1簇都与两种类型的钙激活钾离子通道BK和SK2共定位,最近邻距离约为40 nm。通过打开Cav2.1通道产生的钙纳米域可能激活了两个通道,从而限制了去极化的程度。

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