首页> 美国卫生研究院文献>The Journal of Neuroscience >Distinct Kv Channel Subtypes Contribute to Differences in Spike Signaling Properties in the Axon Initial Segment and Presynaptic Boutons of Cerebellar Interneurons
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Distinct Kv Channel Subtypes Contribute to Differences in Spike Signaling Properties in the Axon Initial Segment and Presynaptic Boutons of Cerebellar Interneurons

机译:不同的Kv通道亚型促成小轴Interneurons的轴突初始节段和突触前Boutons的穗信号特性中的差异。

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摘要

The discrete arrangement of voltage-gated K+ (Kv) channels in axons may impart functional advantages in action potential (AP) signaling yet, in compact cell types, the organization of Kv channels is poorly understood. We find that in cerebellar stellate cell interneurons of mice, the composition and influence of Kv channels populating the axon is diverse and depends on location allowing axonal compartments to differentially control APs in a local manner. Kv1 channels determine AP repolarization at the spike initiation site but not at more distal sites, limiting the expression of use-dependent spike broadening to the most proximal axon region, likely a key attribute informing spiking phenotype. Local control of AP repolarization at presynaptic boutons depends on Kv3 channels keeping APs brief, thus limiting Ca2+ influx and synaptic strength. These observations suggest that AP repolarization is tuned by the local influence of distinct Kv channel types, and this organization enhances the functional segregation of axonal compartments.
机译:轴突中电压门控K + (Kv)通道的离散排列可能在动作电位(AP)信号传导中发挥功能优势,但在紧凑型细胞类型中,对Kv通道的组织了解很少。我们发现在小鼠的小脑星状细胞interneurons,组成轴突的Kv通道的组成和影响是多种多样的,并且取决于允许轴突区室以局部方式差异控制AP的位置。 Kv1通道决定了尖峰起始位点的AP复极化,而不是远端的更多位,从而将依赖于使用的尖峰的表达限制在最接近的轴突区域,这可能是导致尖峰表型的关键属性。突触前纽扣对AP复极的局部控制取决于Kv3通道,使AP保持简短,从而限制了Ca 2 + 的涌入和突触强度。这些观察结果表明,AP复极受不同Kv通道类型的局部影响而调节,并且该组织增强了轴突区室的功能分离。

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