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Kv1 channels selectively prevent dendritic hyperexcitability in rat Purkinje cells

机译:Kv1通道选择性阻止大鼠Purkinje细胞中的树突性过度兴奋

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摘要

Purkinje cells, the sole output of the cerebellar cortex, encode the timing signals required for motor coordination in their firing rate and activity pattern. Dendrites of Purkinje cells express a high density of P/Q-type voltage-gated calcium channels and fire dendritic calcium spikes. Here we show that dendritic subthreshold Kv1.2 subunit-containing Kv1 potassium channels prevent generation of random spontaneous calcium spikes. With Kv1 channels blocked, dendritic calcium spikes drive bursts of somatic sodium spikes and prevent the cell from faithfully encoding motor timing signals. The selective dendritic function of Kv1 channels in Purkinje cells allows them to effectively suppress dendritic hyperexcitability without hindering the generation of somatic action potentials. Further, we show that Kv1 channels also contribute to dendritic integration of parallel fibre synaptic input. Kv1 channels are often targeted to soma and axon and the data presented support a major dendritic function for these channels.
机译:小脑皮层的唯一输出浦肯野细胞以其发动频率和活动模式编码运动协调所需的时间信号。浦肯野细胞的树突状细胞表达高密度的P / Q型电压门控钙通道和火状树突状钙尖峰。在这里,我们显示树突状亚阈值Kv1.2亚基包含Kv1钾通道可防止随机自发钙尖峰的产生。 Kv1通道受阻后,树突状钙峰值驱动体钠峰值的爆发,并阻止细胞如实地编码运动计时信号。浦肯野细胞中Kv1通道的选择性树突功能使它们能够有效抑制树突过度兴奋性,而不会阻碍体细胞动作电位的产生。此外,我们显示Kv1通道也有助于平行纤维突触输入的树突整合。 Kv1通道通常针对躯体和轴突,并且提供的数据支持这些通道的主要树突功能。

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