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皮质类固醇对单个海马CA1神经元离子通道电导和mRNA水平的调节。

Corticosteroid regulation of ion channel conductances and mRNA levels in individual hippocampal CA1 neurons.

作者信息

Nair S M, Werkman T R, Craig J, Finnell R, Joëls M, Eberwine J H

机构信息

Department of Pharmacology, University of Pennsylvania Medical Center, Philadelphia, Pennsylvania 19104, USA.

出版信息

J Neurosci. 1998 Apr 1;18(7):2685-96. doi: 10.1523/JNEUROSCI.18-07-02685.1998.

Abstract

Overexposure to corticosteroid hormones is harmful to hippocampal neuronal integrity, likely by perturbation of calcium homeostasis. To identify molecular mechanisms at the single-cell level, we characterized mRNA expression corresponding to voltage- and ligand-gated Ca channels in individual dissociated CA1 neurons in response to long-term corticosterone (CORT) exposure. Predominant mineralocorticoid receptor occupation (ADC-LO group) resulted in low levels of P/Q- and L-type Ca channel mRNAs, high levels of GluR-2 versus GluR-1, and a high ratio of NMDAR-2A to NMDAR-2B mRNA. Corresponding alterations in protein expression were consistent with the restriction of Ca influx. In contrast, additional glucocorticoid receptor occupation (ADC-HI group) altered the expression of these mRNAs in a manner consistent with enhanced Ca influx; interestingly, qualitatively similar alterations were seen in control ADX neurons. Electrophysiological data from the same neurons indicate that Ca current amplitudes also are modulated by CORT, although on a shorter time scale. Finally, principal components analysis (PCA) suggests that neuronal AMPA and NMDA receptor composition may be regulated by MR and GR activation in a complex manner. Therefore, our data implicate molecular events by which CORT may regulate Ca influx into CA1 hippocampal neurons.

摘要

长期暴露于皮质类固醇激素对海马神经元的完整性有害,可能是通过扰乱钙稳态来实现的。为了在单细胞水平上确定分子机制,我们对单个解离的CA1神经元中与电压门控和配体门控钙通道相对应的mRNA表达进行了表征,以响应长期皮质酮(CORT)暴露。主要的盐皮质激素受体占据(ADC-LO组)导致P/Q型和L型钙通道mRNA水平较低,GluR-2与GluR-1的水平较高,以及NMDAR-2A与NMDAR-2B mRNA的高比例。蛋白质表达的相应改变与钙内流的限制一致。相比之下,额外的糖皮质激素受体占据(ADC-HI组)以与增强的钙内流一致的方式改变了这些mRNA的表达;有趣的是,在对照ADX神经元中也观察到了定性相似的改变。来自同一神经元的电生理数据表明,钙电流幅度也受到CORT的调节,尽管时间尺度较短。最后,主成分分析(PCA)表明,神经元AMPA和NMDA受体的组成可能以复杂的方式受到MR和GR激活的调节。因此,我们的数据揭示了CORT可能调节钙流入海马CA1神经元的分子事件。

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