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首页> 外文期刊>Journal of Neurophysiology >Glucocorticoids specifically enhance L-type calcium current amplitude and affect calcium channel subunit expression in the mouse hippocampus.
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Glucocorticoids specifically enhance L-type calcium current amplitude and affect calcium channel subunit expression in the mouse hippocampus.

机译:糖皮质激素可特异性增强L型钙电流振幅并影响小鼠海马中钙通道亚单位的表达。

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Previous studies have shown that corticosterone enhances whole cell calcium currents in CA1 pyramidal neurons, through a pathway involving binding of glucocorticoid receptor homodimers to the DNA. We examined whether glucocorticoids show selectivity for L- over N-type of calcium currents. Moreover, we addressed the putative gene targets that eventually lead to the enhanced calcium currents. Electrophysiological recordings were performed in nucleated patches that allow excellent voltage control. Calcium currents in these patches almost exclusively involve N- and L-type channels. We found that L- but not N-type calcium currents were largely enhanced after treatment with a high dose of corticosterone sufficient to activate glucocorticoid receptors. Voltage dependency and kinetic properties of the currents were unaffected by the hormone. Nonstationary noise analysis suggests that the increased current is not caused by a larger unitary conductance, but rather to a doubling of the number of functional channels. Quantitative real-time PCR revealed that transcripts of the Ca(v)1 subunits encoding for the N- or L-type calcium channels are not upregulated in the mouse CA1 area; instead, a strong, direct, and consistent upregulation of the beta4 subunit was observed. This indicates that the corticosteroid-induced increase in number of L-type calcium channels is not caused by a simple transcriptional regulation of the pore-forming subunit of the channels.
机译:先前的研究表明,皮质酮通过涉及糖皮质激素受体同型二聚体与DNA结合的途径增强CA1锥体神经元的全细胞钙电流。我们检查了糖皮质激素是否对L型钙离子电流具有选择性。此外,我们研究了最终导致钙电流增加的推定基因靶标。电生理记录在有核斑块中进行,可以实现出色的电压控制。这些贴片中的钙电流几乎全部涉及N型和L型通道。我们发现,用足以激活糖皮质激素受体的高剂量皮质酮治疗后,L型而不是N型钙电流大大增强。电压对电流的依赖性和电流的动力学特性不受激素的影响。非平稳噪声分析表明,增加的电流不是由较大的单位电导引起的,而是功能通道数量增加了一倍。实时定量PCR揭示,在小鼠CA1区域中,编码N型或L型钙通道的Ca(v)1亚基的转录本没有上调。相反,观察到了beta4亚基的强烈,直接和一致的上调。这表明皮质类固醇诱导的L型钙通道数量的增加不是由通道孔形成亚基的简单转录调控引起的。

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