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首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Memory reconsolidation engages only a subset of immediate-early genes induced during consolidation.
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Memory reconsolidation engages only a subset of immediate-early genes induced during consolidation.

机译:记忆再整合仅参与整合过程中诱导的即刻早期基因的一部分。

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摘要

The relationship between memory consolidation and reconsolidation at the molecular level is poorly understood. Here, we identify three immediate-early genes that are differentially regulated in the mouse hippocampus after contextual fear conditioning and reactivation of the context-shock memory: serum- and glucocorticoid-induced kinase 1 (SGK1), SGK3, and nerve growth factor-inducible gene B (NGFI-B). The upregulation of SGK1 expression was not specific for the context-shock association and therefore not suitable for a comparison of contextual memory consolidation and reconsolidation. SGK3 expression was upregulated during both consolidation and reconsolidation. Analysis of SGK3 expression showed that expression changes elicited by a context-shock association during consolidation can subsequently be recapitulated during reconsolidation and that the transcriptional changes induced by retrieval depend on the remoteness of the memory. On the other hand, we found that NGFI-B is regulated during consolidation but not reconsolidation. This consolidation-specific regulation occurs in hippocampal area CA1. Our discovery of a consolidation-specific transcription indicates that reconsolidation is only a partial recapitulation of consolidation at the transcriptional level. Such partial rather than total recapitulation may have evolved as a more economic and reliable mechanism for organisms to modify memory.
机译:在分子水平上记忆巩固和再巩固之间的关系知之甚少。在这里,我们确定了上下文恐惧调节和上下文休克记忆的重新激活后小鼠海马中受差异调节的三个早期基因:血清和糖皮质激素诱导的激酶1(SGK1),SGK3和神经生长因子诱导型基因B(NGFI-B)。 SGK1表达的上调不是特定于上下文冲击关联的,因此不适合用于上下文内存合并和重新合并的比较。在整合和再整合过程中,SGK3表达均上调。 SGK3表达的分析表明,整合过程中上下文关联引起的表达变化可以随后在整合过程中概括,并且由检索引起的转录变化取决于记忆的距离。另一方面,我们发现NGFI-B在合并过程中受到监管,但没有被重新合并。这种整合特异性调节发生在海马区CA1。我们对整合特异转录的发现表明,重新整合只是转录水平上整合的部分概括。这种部分重现而非全部重现可能已演变为生物体修改记忆的更经济,更可靠的机制。

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