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首页> 外文期刊>Molecular Neurobiology >Genetic Up-Regulation or Pharmacological Activation of the Na+/Ca2+ Exchanger 1 (NCX1) Enhances Hippocampal-Dependent Contextual and Spatial Learning and Memory
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Genetic Up-Regulation or Pharmacological Activation of the Na+/Ca2+ Exchanger 1 (NCX1) Enhances Hippocampal-Dependent Contextual and Spatial Learning and Memory

机译:Na + / Ca2 +交换器1(NCX1)的遗传上调或药理学活化增强了海马依赖的上下文和空间学习和记忆

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The Na+/Ca2+ exchanger 1 (NCX1) participates in the maintenance of neuronal Na+ and Ca2+ 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 Ca2+ 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(over)) and a newly synthesized selective NCX1 stimulating compound, named CN-PYB2. Both ncx1.4(over) 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 CaMKII alpha 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.
机译:Na + / Ca2 +交换器1(NCX1)参与神经元Na +和Ca2 +稳态的维持,并且在参与学习和记忆过程的一些脑区的Synapse水平中,在包括海马,皮质和杏仁达拉的一些大脑区域的突触水平上高度表达。此外,NCX1增加AKT1磷酸化,并在海马和皮质神经元的去极化期间增强谷氨酸介导的Ca2 +流入,学习和内存机制的两种过程。我们调查了NCX1表达/活动的调制是否可能影响学习和内存过程。为此目的,我们使用过表达的NCX1在海马,皮质和杏仁杆菌(NCX1.4(OR))和新合成的选择性NCX1刺激化合物中的敲击小鼠过表达NCX1,命名为CN-PYB2。 NCX1.4(OR)和CN-PYB2处理的小鼠均在Barnes Maze任务中的空间学习性能以及在追踪恐惧调理后的上下文依赖记忆合并中进行了改进。另一方面,这些小鼠没有改善新的对象识别任务,主要依赖于非空间记忆并显示出海马中活性磷酸化的Camkiiα水平的增加。有趣的是,这两只小鼠都表现出增加的上下文依赖焦虑水平。总的来说,这些结果表明,神经元NCX1参与空间依赖的海马学习和记忆过程。

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