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首页> 外文期刊>Trends in Neurosciences >Kv3 channels: voltage-gated K+ channels designed for high-frequency repetitive firing.
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Kv3 channels: voltage-gated K+ channels designed for high-frequency repetitive firing.

机译:Kv3通道:电压门控K +通道,设计用于高频重复发射。

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摘要

Analysis of the Kv3 subfamily of K(+) channel subunits has lead to the discovery of a new class of neuronal voltage-gated K(+) channels characterized by positively shifted voltage dependencies and very fast deactivation rates. These properties are adaptations that allow these channels to produce currents that can specifically enable fast repolarization of action potentials without compromising spike initiation or height. The short spike duration and the rapid deactivation of the Kv3 currents after spike repolarization maximize the quick recovery of resting conditions after an action potential. Several neurons in the mammalian CNS have incorporated into their repertoire of voltage-dependent conductances a relatively large number of Kv3 channels to enable repetitive firing at high frequencies - an ability that crucially depends on the special properties of Kv3 channels and their impact on excitability.
机译:对K(+)通道亚基的Kv3亚家族的分析已导致发现一类新的神经元电压门控K(+)通道,其特征为正向电压依赖性和非常快的失活速率。这些特性是自适应的,允许这些通道产生电流,这些电流可以专门使动作电位快速重新极化,而不会影响尖峰的起始或高度。尖峰重新极化后,较短的尖峰持续时间和Kv3电流的快速失活最大程度地提高了动作电位后静息状态的恢复。哺乳动物CNS中的几个神经元已将相对大量的Kv3通道整合到其电压依赖性电导表中,从而能够在高频下重复发射-这种能力关键取决于Kv3通道的特殊性质及其对兴奋性的影响。

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