首页> 外文期刊>Neuroscience: An International Journal under the Editorial Direction of IBRO >Developmental changes in the expression of calbindin and potassium-channel subunits Kv3.1b and Kv3.2 in mouse Renshaw cells.
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Developmental changes in the expression of calbindin and potassium-channel subunits Kv3.1b and Kv3.2 in mouse Renshaw cells.

机译:在小鼠Renshaw细胞中钙结合蛋白和钾通道亚基Kv3.1b和Kv3.2表达的发育变化。

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摘要

One class of spinal interneurons, the Renshaw cells, is able to discharge at very high frequencies in adult mammals. Neuronal firing at such high frequencies requires voltage-gated potassium channels to rapidly repolarize the membrane potential after each action potential. We sought to establish the pattern of expression of calbindin and potassium channels with Kv3.1b and Kv3.2 subunits in Renshaw cells at different developmental stages of postnatal mice. The pattern of expression of calbindin changed dramatically during early postnatal development. An adult pattern of calbindin reactive neurons started to emerge from postnatal day 10 to postnatal day 14, with cells in laminae I and II of superficial dorsal horn and the ventral lamina VII. Renshaw cells were identified immunohistochemically by their expression of calbindin and their location in the ventral horn of the spinal cord. Western blot results of the lumbar spinal cord showed that Kv3.1b expression became faintly evident from postnatal day 10, reached a maximum at postnatal day 21 and was maintained through postnatal day 49. Double labeling results showed that all Renshaw cells expressed Kv3.1b weakly from postnatal day 14, and strongly at postnatal day 21. Western blot results showed that Kv3.2 expression became detectable in the lumbar cord from postnatal day 12, and increased steadily until reaching an adult level at postnatal day 28. In contrast to the Kv3.1b results, Kv3.2 was not expressed in Renshaw cells, although some neurons located at laminae VIII and VI expressed Kv3.2. We conclude that Renshaw cells express Kv3.1b but not Kv3.2 from postnatal day 14.
机译:一类脊神经中枢神经元Renshaw细胞能够在成年哺乳动物中以很高的频率放电。在如此高的频率下,神经元放电需要电压门控的钾离子通道,以便在每个动作电位后迅速使膜电位重新极化。我们试图建立在出生后小鼠不同发育阶段的Renshaw细胞中具有Kv3.1b和Kv3.2亚基的钙结合蛋白和钾通道的表达模式。钙结合蛋白的表达模式在出生后早期发生了巨大变化。钙结合蛋白反应性神经元的成年模式从出生后第10天到出生后第14天开始出现,表层背角I和II以及腹板VII中的细胞。 Renshaw细胞通过calbindin的表达及其在脊髓腹角中的位置进行免疫组织化学鉴定。腰脊髓的Western印迹结果表明,从出生后第10天开始,Kv3.1b的表达就变得微弱,在出生后第21天达到最大值,并在出生后第49天一直保持。双标记结果表明,所有Renshaw细胞均较弱地表达Kv3.1b从出生后第14天开始,在出生后第21天开始强烈。Western blot结果显示,从出生后第12天开始,在腰椎中可检测到Kv3.2表达,并在出生后第28天稳定增长直至达到成人水平。 .1b结果,Renshaw细胞中未表达Kv3.2,尽管位于第VIII和VI层的一些神经元表达了Kv3.2。我们得出结论,从出生后第14天起,Renshaw细胞表达Kv3.1b,但不表达Kv3.2。

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