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首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Spontaneous calcium spike activity in embryonic spinal neurons is regulated by developmental expression of the Na+, K+-ATPase beta3 subunit.
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Spontaneous calcium spike activity in embryonic spinal neurons is regulated by developmental expression of the Na+, K+-ATPase beta3 subunit.

机译:Na +,K + -ATPase beta3亚基的发育表达调节胚胎脊髓神经元中的自发钙峰值活性。

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摘要

Different types and patterns of spontaneous electrical activity drive many aspects of neuronal differentiation. Neurons in the developing Xenopus spinal cord exhibit calcium spikes, which regulate gene transcription and neurotransmitter specification. The ionic currents necessary for spike production have been described. However, the mechanisms that generate the onset of this activity and the basis of its regulation remain unclear. Although signaling molecules appear to act on plasma membrane receptors to trigger calcium spike activity, other mechanisms for spontaneous calcium spike regulation may exist as well. Here, we analyze the developmental expression of the Na(+), K(+)-ATPase beta3 subunit in Xenopus tropicalis embryos and show that its levels are downregulated at a time during embryonic development that coincides with the onset of prominent calcium spike activity in spinal neurons. Inhibition of an earlier increase in beta3 expression leads to more depolarized resting membrane potentials and results in later reduction of spike activity. This suppression of beta3 levels also reduces expression of the store-operated calcium channel subunit, Orai1. These findings suggest that the Na(+), K(+)-ATPase plays a role in initiating calcium spike activity and regulating calcium homeostasis.
机译:自发性电活动的不同类型和模式驱动神经元分化的许多方面。发育中的非洲爪蟾脊髓中的神经元表现出钙峰值,该钙峰值调节基因转录和神经递质规格。已经描述了产生尖峰所需的离子电流。但是,尚不清楚产生这种活动的机制及其调控的基础。尽管信号分子似乎作用于质膜受体以触发钙尖峰活性,但也可能存在其他自发钙尖峰调节的机制。在这里,我们分析了非洲爪蟾胚胎中Na(+),K(+)-ATPase beta3亚基的发育表达,并表明其水平在胚胎发育过程中的某个时间下调,这与该物种中显着的钙峰值活性的发生相吻合。脊髓神经元。抑制beta3表达的较早增加会导致更多的去极化的静息膜电位,并导致以后的刺突活性降低。 beta3水平的这种抑制也降低了存储操作的钙通道亚基Orai1的表达。这些发现表明,Na(+),K(+)-ATPase在启动钙峰值活性和调节钙稳态中起作用。

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