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首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Inwardly rectifying K+ channels that may participate in K+ buffering are localized in microvilli of Schwann cells.
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Inwardly rectifying K+ channels that may participate in K+ buffering are localized in microvilli of Schwann cells.

机译:可能参与K +缓冲的向内整流K +通道位于雪旺细胞的微绒毛中。

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摘要

The presence of K+ channels on the Schwann cell plasma membrane suggests that Schwann cells may participate actively during action potential propagation in the peripheral nervous system. One such role for Schwann cells may be to maintain a constant extracellular concentration of K+ in the face of K+ efflux from a repolarizing axon. This buffering is likely to involve the influx of K+ through inward rectifying K+ channels. The molecular cloning of these genes allowed us to examine their expression and localization in Schwann cells in detail. In this study, we demonstrate the expression of two inward rectifying K+ channels, IRK1 and IRK3, in adult rat sciatic nerve. Immunocytochemistry using a polyclonal antibody against these proteins showed that the channels were highly localized at nodes in sciatic nerve. By immunoelectron microscopy, the nodal staining was shown to be concentrated in the microvilli of Schwann cells (also called nodal processes). The large surface area of the microvilli and their presence in the nodal space suggest involvement with ionic buffering. Thus, IRK1 and IRK3 are well suited to K+ buffering by virtue of both their biophysical properties and their localization. The restricted distribution of the inward rectifying K+ channels also provides an example of the highly regulated localization of ion channels to their specialized membrane domains. In the Schwann cell, where the nodal processes are a minute fraction of the total cell membrane, a potent mechanism must be present to concentrate the channels in this structure.
机译:雪旺氏细胞质膜上K +通道的存在表明,雪旺氏细胞可能在周围神经系统的动作电位传播过程中积极参与。雪旺氏细胞的这种作用之一可能是在面对来自重新极化轴突的K +外排时保持K +在细胞外的恒定浓度。这种缓冲可能涉及通过向内整流K +通道流入K +。这些基因的分子克隆使我们能够详细检查其在雪旺细胞中的表达和定位。在这项研究中,我们证明了成年大鼠坐骨神经中两个向内整流的K +通道IRK1和IRK3的表达。使用针对这些蛋白质的多克隆抗体进行的免疫细胞化学分析显示,这些通道高度位于坐骨神经结节中。通过免疫电子显微镜观察,淋巴结染色集中在雪旺细胞的微绒毛中(也称为淋巴结过程)。微绒毛的大表面积及其在节空间中的存在表明参与离子缓冲。因此,由于IRK1和IRK3的生物物理特性和定位,它们非常适合K +缓冲。向内整流的K +通道的受限分布也提供了离子通道到其专门的膜结构域的高度调节的定位的例子。在雪旺氏细胞中,结节过程仅占整个细胞膜的一小部分,因此必须存在有效​​的机制才能将通道集中在该结构中。

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