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环磷酸腺苷反应元件结合蛋白介导的基因表达增加了CA1锥体神经元的内在兴奋性。

cAMP response element-binding protein-mediated gene expression increases the intrinsic excitability of CA1 pyramidal neurons.

作者信息

Lopez de Armentia Mikel, Jancic Dragana, Olivares Roman, Alarcon Juan M, Kandel Eric R, Barco Angel

机构信息

Instituto de Neurociencias de Alicante (Universidad Miguel Hernández-Consejo Superior de Investigaciones Científicas), Campus de Sant Joan, Sant Joan d'Alacant, 03550 Alicante, Spain.

出版信息

J Neurosci. 2007 Dec 12;27(50):13909-18. doi: 10.1523/JNEUROSCI.3850-07.2007.

DOI:10.1523/JNEUROSCI.3850-07.2007
PMID:18077703
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC6673625/
Abstract

To investigate the role of CREB-mediated gene expression on the excitability of CA1 pyramidal neurons, we obtained intracellular recordings from pyramidal neurons of transgenic mice expressing a constitutively active form of CREB, VP16-CREB, in a regulated and restricted manner. We found that transgene expression increased the neuronal excitability and inhibited the slow and medium afterhyperpolarization currents. These changes may contribute to the reduced threshold for LTP observed in these mice. When strong transgene expression was turned on for prolonged period of time, these mice also showed a significant loss of hippocampal neurons and sporadic epileptic seizures. These deleterious effects were dose dependent and could be halted, but not reversed by turning off transgene expression. Our experiments reveal a new role for hippocampal CREB-mediated gene expression, identify the slow afterhyperpolarization as a primary target of CREB action, provide a new mouse model to investigate temporal lobe epilepsy and associated neurodegeneration, and illustrate the risks of cell death associated to a sustained manipulation of this pathway. As a result, our study has important implications for both the understanding of the cellular bases of learning and memory and the consideration of therapies targeted to the CREB pathway.

摘要

为了研究CREB介导的基因表达对CA1锥体神经元兴奋性的作用,我们以一种受调控且受限的方式,从表达组成型活性形式的CREB(VP16-CREB)的转基因小鼠的锥体神经元中进行了细胞内记录。我们发现转基因表达增加了神经元的兴奋性,并抑制了缓慢和中等幅度的超极化后电流。这些变化可能导致了在这些小鼠中观察到的LTP阈值降低。当长时间开启强转基因表达时,这些小鼠还表现出海马神经元的显著丧失和散发性癫痫发作。这些有害影响是剂量依赖性的,并且通过关闭转基因表达可以停止,但不能逆转。我们的实验揭示了海马CREB介导的基因表达的新作用,确定缓慢超极化后电流是CREB作用的主要靶点,提供了一个新的小鼠模型来研究颞叶癫痫和相关的神经退行性变,并说明了与持续操纵该通路相关的细胞死亡风险。因此,我们的研究对于理解学习和记忆的细胞基础以及考虑针对CREB通路的治疗方法都具有重要意义。

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