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首页> 外文期刊>Trends in Neurosciences >Variability in the subcellular distribution of ion channels increases neuronal diversity.
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Variability in the subcellular distribution of ion channels increases neuronal diversity.

机译:离子通道亚细胞分布的可变性增加了神经元多样性。

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The exact location of an ion channel on the axo-somato-dendritic surface of a nerve cell crucially affects its functional impact. Recent high-resolution immunolocalization experiments examining the distribution of GABA and glutamate receptors, voltage-gated potassium and sodium channels and hyperpolarization-activated mixed cation (HCN) channels clearly demonstrate the lack of simple rules concerning their subcellular distribution. For example, the density of HCN1 subunits in pyramidal cells increases 60-fold from soma to distal dendrites but is uniform over the somato-dendritic surface of olfactory bulb external tufted cells and is highest in the axon of cortical and cerebellar basket cells. Such findings highlight the necessity of determining the precise subcellular location and density of each ion channel in every cell type. Here, I suggest that variations in the subcellular distribution of ion channels are previously unrecognized means of increasing neuronal diversity and, thus, the computational power of the brain.
机译:离子通道在神经细胞轴突-树突状树突表面上的确切位置会严重影响其功能。最近的高分辨率免疫定位实验检查了GABA和谷氨酸受体的分布,电压门控的钾和钠通道以及超极化激活的混合阳离子(HCN)通道,清楚地表明了缺乏有关其亚细胞分布的简单规则。例如,锥体细胞中HCN1亚基的密度从体到远端树突增加60倍,但在嗅球外簇状细胞的体树突表面上均匀,并且在皮质和小脑篮细胞的轴突中最高。这些发现强调了确定每种细胞类型中每个离子通道的精确亚细胞位置和密度的必要性。在这里,我建议离子通道亚细胞分布的变化以前是无法识别的增加神经元多样性并因此增加大脑计算能力的手段。

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