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A molecular rheostat: Kv2.1 currents maintain or suppress repetitive firing in motoneurons

机译:分子变压率:KV2.1电流维持或抑制运动神经元中的重复烧制

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Key points Kv2 currents maintain and regulate motoneuron (MN) repetitive firing properties. Kv2.1 channel clustering properties are dynamic and respond to both high and low activity conditions. The enzyme calcineurin regulates Kv2.1 ion channel declustering. In patholophysiological conditions of high activity, Kv2.1 channels homeostatically reduce MN repetitive firing. Modulation of Kv2.1 channel kinetics and clustering allows these channels to act in a variable way across a spectrum of MN activity states. Abstract Kv2.1 channels are widely expressed in the central nervous system, including in spinal motoneurons (MNs) where they aggregate as distinct membrane clusters associated with highly regulated signalling ensembles at specific postsynaptic sites. Multiple roles for Kv2 channels have been proposed but the physiological role of Kv2.1 ion channels in mammalian spinal MNs is unknown. To determine the contribution of Kv2.1 channels to rat α‐motoneuron activity, the Kv2 inhibitor stromatoxin was used to block Kv2 currents in whole‐cell current clamp electrophysiological recordings in rat lumbar MNs. The results indicate that Kv2 currents permit shorter interspike intervals and higher repetitive firing rates, possibly by relieving Na + channel inactivation, and thus contribute to maintenance of repetitive firing properties. We also demonstrate that Kv2.1 clustering properties in motoneurons are dynamic and respond to both high and low activity conditions. Furthermore, we show that the enzyme calcineurin regulates Kv2.1 ion channel clustering status. Finally, in a high activity state, Kv2.1 channels homeostatically reduce motoneuron repetitive firing. These results suggest that the activity‐dependent regulation of Kv2.1 channel kinetics allows these channels to modulate repetitive firing properties across a spectrum of motoneuron activity states.
机译:关键点KV2电流维持和调节运动神经元(Mn)重复烧制性能。 KV2.1信道群集属性是动态的,响应高和低活动条件。酶钙素调节KV2.1离子通道的降解。在高活性的病理生理病症中,KV2.1通道友好地减少了Mn重复烧制。 kV2.1通道动力学和聚类的调制允许这些信道以可变的方式在跨越的MN活动状态下采用。摘要KV2.1通道广泛表达在中枢神经系统中,包括脊柱运动神经元(MNS),其中它们以特定的突触位点在特定的突触位点与高度监管的信号合并相关的不同膜簇。已经提出了kV2通道的多种作用,但哺乳动物脊柱MNS中KV2.1离子通道的生理作用是未知的。为了确定KV2.1通道对大鼠α-Motoneuron活性的贡献,KV2抑制剂血清毒素用于阻断大鼠腰部MNS的全细胞电流钳位电生理记录中的KV2电流。结果表明,通过缓解Na +通道灭活,kV2电流允许更短的间隔间隔和更高的重复烧制率,从而有助于维持重复烧制性质。我们还证明了运动神经元中的KV2.1聚类性能是动态的,响应高和低活动条件。此外,我们表明酶钙素调节KV2.1离子通道聚类状态。最后,在高活动状态下,KV2.1通道宿命不用地减少了Motoneuron重复烧制。这些结果表明,KV2.1通道动力学的活动依赖性调节允许这些通道在跨越运动神经元活动状态的频谱中调节重复烧制性质。

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