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Spinal Control of Motor Outputs: Sodium pump regulation of locomotor control circuits

机译:电机输出的脊柱控制:运动控制电路的钠泵调节

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摘要

Sodium pumps are ubiquitously expressed membrane proteins that extrude three Na+ ions in exchange for two K+ ions, using ATP as an energy source. Recent studies have illuminated additional, dynamic roles for sodium pumps in regulating the excitability of neuronal networks in an activity-dependent fashion. We review their role in a novel form of short-term memory within rhythmic locomotor networks. The data we review derives mainly from recent studies on Xenopus tadpoles and neonatal mice. The role and underlying mechanisms of pump action broadly match previously published data from an invertebrate, the Drosophila larva. We therefore propose a highly conserved mechanism by which sodium pump activity increases following a bout of locomotion. This results in an ultraslow afterhyperpolarization (usAHP) of the membrane potential that lasts around 1 min, but which only occurs in around half the network neurons. This usAHP in turn alters network excitability so that network output is reduced in a locomotor interval-dependent manner. The pumps therefore confer on spinal locomotor networks a temporary memory trace of recent network performance.
机译:钠泵是一种普遍表达的膜蛋白,它利用ATP作为能源,挤出三个Na + 离子来交换两个K + 离子。最近的研究阐明了钠泵以活动依赖的方式调节神经元网络的兴奋性的其他动态作用。我们回顾了它们在有节奏的运动网络内短期记忆的新型形式中的作用。我们审查的数据主要来自非洲爪蟾t和新生小鼠的最新研究。泵浦作用的作用和潜在机理与无脊椎动物果蝇幼虫先前发表的数据大致相符。因此,我们提出了一种高度保守的机制,通过该机制,运动后,钠泵的活性增加。这会导致膜电位超慢的超极化后(usAHP),持续约1分钟,但仅发生在约一半的网络神经元中。该usAHP反过来会改变网络的兴奋性,从而以运动间隔相关的方式降低网络输出。因此,这些泵在脊柱运动网络上赋予了近期网络性能的临时记忆痕迹。

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