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首页> 外文期刊>Neuroscience: An International Journal under the Editorial Direction of IBRO >The K+ channel, Kv2.1, is apposed to astrocytic processes and is associated with inhibitory postsynaptic membranes in hippocampal and cortical principal neurons and inhibitory interneurons.
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The K+ channel, Kv2.1, is apposed to astrocytic processes and is associated with inhibitory postsynaptic membranes in hippocampal and cortical principal neurons and inhibitory interneurons.

机译:K +通道Kv2.1与星形胶质细胞过程有关,并与海马和皮层主要神经元和抑制​​性中间神经元中的抑制性突触后膜相关。

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摘要

A variety of voltage-gated ion channels are expressed on principal cell dendrites and have been proposed to play a pivotal role in the regulation of dendritic excitability. Previous studies at the light microscopic level demonstrated that the K+ channel subunit Kv2.1 expression was polarized to the cell soma and dendrites of principal neurons throughout the central nervous system. Here, using double immunostaining we now show that Kv2.1 protein is similarly expressed in the majority of cortical and hippocampal parvalbumin, calbindin and somatostatin-containing inhibitory interneurons. At the electron microscopic level Kv2.1 immunoreactivity was primarily observed on the plasma membrane of the somata and proximal dendrites of both principal neurons and inhibitory interneurons; expression was low on smaller dendritic branches, and absent on axons and presynaptic terminals. Kv2.1 subunit expression was highly concentrated on the cell surface membrane immediately facing astrocytic processes. Kv2.1 expression was also concentrated in specific cytoplasmic compartments and on the subsurface cisterns underlying the plasma membrane facing astrocytes. In addition, Kv2.1 subunit immunoreactivity was associated with postsynaptic densities of a fraction of inhibitory symmetric synapses; while expression at asymmetric synapses was rare. These data demonstrate that channels formed by Kv2.1 subunits are uniquely positioned on the soma and principal dendrites of both pyramidal cells and inhibitory interneurons at sites immediately adjacent to astrocytic processes. This close apposition to astrocytes will ensure a rapid removal and limit the influence of K+ released into the extracellular space. This expression pattern suggests that channels formed by Kv2.1 are poised to provide a role in the regulation of neuronal dendritic excitability.
机译:多种电压门控离子通道在主要细胞树突上表达,并已提出在调节树突兴奋性中起关键作用。先前在光学显微镜下的研究表明,K +通道亚基Kv2.1的表达被极化至整个中枢神经系统的主要体神经元的细胞体和树突。在这里,使用双重免疫染色,我们现在显示Kv2.1蛋白在大多数皮质和海马小白蛋白,钙结合蛋白和生长抑素抑制性中间神经元中类似表达。在电子显微镜下,Kv2.1的免疫反应性主要在躯体的质膜和主要神经元和抑制​​性中间神经元的近端树突上观察到。在较小的树突状分支中表达低,而在轴突和突触前末端不表达。 Kv2.1亚基的表达高度集中在立即面对星形细胞过程的细胞表面膜上。 Kv2.1表达也集中在特定的细胞质区室和面向星形胶质细胞的质膜下的地下池中。此外,Kv2.1亚基免疫反应性与部分抑制性对称突触的突触后密度有关。不对称突触处的表达很少。这些数据表明,由Kv2.1亚基形成的通道独特地位于锥体细胞和抑制性中间神经元的体细胞和主要树突上,紧邻星形细胞过程。与星形胶质细胞的这种紧密结合将确保快速清除并限制释放到细胞外空间的K +的影响。此表达模式表明,由Kv2.1形成的通道已准备好在神经元树突兴奋性的调节中发挥作用。

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