首页> 美国卫生研究院文献>The Journal of Neuroscience >Long-Delayed Expression of the Immediate Early Gene Arc/Arg3.1 Refines Neuronal Circuits to Perpetuate Fear Memory
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Long-Delayed Expression of the Immediate Early Gene Arc/Arg3.1 Refines Neuronal Circuits to Perpetuate Fear Memory

机译:立即早期基因Arc / Arg3.1的长时延表达完善了神经元回路以延续恐惧记忆

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摘要

Fear memories typically persist for long time periods, and persistent fear memories contribute to post-traumatic stress disorder. However, little is known about the cellular and synaptic mechanisms that perpetuate long-term memories. Here, we find that mouse hippocampal CA1 neurons exhibit biphasic Arc (also known as Arg3.1) elevations after fear experience and that the late Arc expression regulates the perpetuation of fear memoires. An early Arc increase returned to the baseline after 6 h, followed by a second Arc increase after 12 h in the same neuronal subpopulation; these elevations occurred via distinct mechanisms. Antisense-induced blockade of late Arc expression disrupted memory persistence but not formation. Moreover, prolonged fear memories were associated with the delayed, specific elimination of dendritic spines and the reactivation of neuronal ensembles formed during fear experience, both of which required late Arc expression. We propose that late Arc expression refines functional circuits in a delayed fashion to prolong fear memory.
机译:恐惧记忆通常会持续很长时间,而持续的恐惧记忆会导致创伤后应激障碍。但是,关于长期记忆的细胞和突触机制知之甚少。在这里,我们发现,在恐惧经历后,小鼠海马CA1神经元表现出双相弧(也称为Arg3.1)升高,并且弧晚期表达调节了恐惧回忆的持久性。在相同的神经元亚群中,早期弧度增加在6小时后恢复到基线,然后在12小时后再次弧度增加。这些升高是通过不同的机制发生的。反义诱导的晚期Arc表达的阻断破坏了记忆持久性,但没有破坏其形成。此外,长时间的恐惧记忆与延迟,特异性消除树突棘和在恐惧经历中形成的神经元集合的重新激活有关,这两者都需要晚期Arc表达。我们建议晚期Arc表达以延迟的方式完善功能电路,以延长恐惧记忆。

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