首页> 外文期刊>The Neuroscientist: a review journal bringing neurobiology, neurology and psychiatry >Voltage-gated potassium channels: regulation by accessory subunits.
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Voltage-gated potassium channels: regulation by accessory subunits.

机译:电压门控钾通道:由辅助亚基调节。

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Voltage-gated potassium channels regulate cell membrane potential and excitability in neurons and other cell types. A precise control of neuronal action potential patterns underlies the basic functioning of the central and peripheral nervous system. This control relies on the adaptability of potassium channel activities. The functional diversity of potassium currents, however, far exceeds the considerable molecular diversity of this class of genes. Potassium current diversity contributes to the specificity of neuronal firing patterns and may be achieved by regulated transcription, RNA splicing, and posttranslational modifications. Another mechanism for regulation of potassium channel activity is through association with interacting proteins and accessory subunits. Here the authors highlight recent work that addresses this growing area of exploration and discuss areas of future investigation.
机译:电压门控钾通道调节神经元和其他细胞类型的细胞膜电位和兴奋性。对神经元动作电位模式的精确控制是中枢和周围神经系统基本功能的基础。这种控制依赖于钾通道活性的适应性。然而,钾电流的功能多样性远远超过了这类基因的相当大的分子多样性。钾电流的多样性有助于神经元放电模式的特异性,并且可以通过调节转录,RNA剪接和翻译后修饰来实现。调节钾通道活性的另一种机制是通过与相互作用的蛋白质和辅助亚基缔合。在这里,作者重点介绍了针对这一不断增长的勘探领域的最新工作,并讨论了未来的研究领域。

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