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基因上调或药理学激活钠钙交换蛋白 1(NCX1)可增强海马依赖性情景和空间学习记忆。

Genetic Up-Regulation or Pharmacological Activation of the Na/Ca Exchanger 1 (NCX1) Enhances Hippocampal-Dependent Contextual and Spatial Learning and Memory.

机构信息

Division of Pharmacology, Department of Neuroscience, Reproductive and Odontostomatologic Sciences, School of Medicine, "Federico II" University of Naples, Via Pansini 5, 80131, Naples, Italy.

IRCCS SDN, 80143, Naples, Italy.

出版信息

Mol Neurobiol. 2020 May;57(5):2358-2376. doi: 10.1007/s12035-020-01888-4. Epub 2020 Feb 11.

Abstract

The Na/Ca exchanger 1 (NCX1) participates in the maintenance of neuronal Na and Ca homeostasis, and it is highly expressed at synapse level of some brain areas involved in learning and memory processes, including the hippocampus, cortex, and amygdala. Furthermore, NCX1 increases Akt1 phosphorylation and enhances glutamate-mediated Ca influx during depolarization in hippocampal and cortical neurons, two processes involved in learning and memory mechanisms. We investigated whether the modulation of NCX1 expression/activity might influence learning and memory processes. To this aim, we used a knock-in mouse overexpressing NCX1 in hippocampal, cortical, and amygdala neurons (ncx1.4) and a newly synthesized selective NCX1 stimulating compound, named CN-PYB2. Both ncx1.4 and CN-PYB2-treated mice showed an amelioration in spatial learning performance in Barnes maze task, and in context-dependent memory consolidation after trace fear conditioning. On the other hand, these mice showed no improvement in novel object recognition task which is mainly dependent on non-spatial memory and displayed an increase in the active phosphorylated CaMKIIα levels in the hippocampus. Interestingly, both of these mice showed an increased level of context-dependent anxiety.Altogether, these results demonstrate that neuronal NCX1 participates in spatial-dependent hippocampal learning and memory processes.

摘要

钠/钙交换蛋白 1(NCX1)参与神经元钠和钙的动态平衡,在参与学习和记忆过程的某些脑区的突触水平高度表达,包括海马体、皮层和杏仁核。此外,NCX1 在海马体和皮质神经元去极化过程中增加 Akt1 磷酸化并增强谷氨酸介导的 Ca 内流,这两个过程都参与学习和记忆机制。我们研究了 NCX1 表达/活性的调节是否会影响学习和记忆过程。为此,我们使用了在海马体、皮层和杏仁核神经元中过表达 NCX1 的基因敲入小鼠(ncx1.4)和一种新合成的选择性 NCX1 刺激化合物,称为 CN-PYB2。ncx1.4 和 CN-PYB2 处理的小鼠在 Barnes 迷宫任务中的空间学习表现以及痕迹恐惧条件反射后的情景依赖记忆巩固方面均有所改善。另一方面,这些小鼠在主要依赖于非空间记忆的新物体识别任务中没有改善,并且在海马体中显示出活性磷酸化 CaMKIIα 水平增加。有趣的是,这两种小鼠均表现出情景依赖的焦虑增加。总之,这些结果表明神经元 NCX1 参与空间依赖的海马体学习和记忆过程。

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