首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Homogeneous development of electrical excitability via heterogeneous ion channel expression.
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Homogeneous development of electrical excitability via heterogeneous ion channel expression.

机译:通过异质离子通道表达实现电激发性的均质发展。

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摘要

Synchronous differentiation of delayed-rectifier potassium current regulates electrical excitability and calcium entry in motor, sensory, and interneurons of the developing amphibian spinal cord. Although Kv1 and Kv2 potassium channel transcripts are detectable in these cells, it is not known which transcript contributes to functional expression. Overexpression of a Kv1 dominant-negative subunit indicates that 20% of neurons have only Kv1 potassium currents. In other neurons, non-Kv1 channels function because the dominant-negative subunit either only partially suppresses or has no effect on current. Thus, diverse embryonic neurons coordinate differentiation of excitability yet rely on heterogeneous potassium channel gene expression.
机译:延迟整流器钾电流的同步分化调节发育中的两栖动物脊髓的运动,感觉和中间神经中的电兴奋性和钙进入。尽管在这些细胞中可检测到Kv1和Kv2钾通道转录物,但尚不清楚哪个转录物有助于功能性表达。 Kv1显性负亚基的过度表达表明20%的神经元只有Kv1钾电流。在其他神经元中,非Kv1通道起作用是因为显性负性亚基仅部分抑制电流或对电流没有影响。因此,不同的胚胎神经元协调兴奋性的分化,但仍依赖于异质钾通道基因表达。

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