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首页> 外文期刊>Nature Communications >Dynamic histone marks in the hippocampus and cortex facilitate memory consolidation.
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Dynamic histone marks in the hippocampus and cortex facilitate memory consolidation.

机译:海马和皮质中的动态组蛋白标记有助于记忆巩固。

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摘要

Memory consolidation requires a timely controlled interplay between the hippocampus, a brain region important for memory formation, and the cortex, a region recruited for memory storage. Here we show that memory consolidation is associated with specific epigenetic modifications on histone proteins that have a distinct dynamic in these brain areas. While in the hippocampus, histone post-translational modifications (PTMs) are rapidly and transiently activated after learning, in the cortex they are induced with delay but persist over time. When these histone PTMs are increased in vivo by transgenic intervention or intense training, they facilitate memory consolidation. Conversely, when they are pharmacologically blocked, memory consolidation is impaired. These histone PTMs are further associated with the expression of the immediate early gene zif268, a transcription factor that favours memory consolidation. These findings reveal the spatiotemporal dynamics of histone marks during memory consolidation, and demonstrate their inherent 'mnemonic' property.
机译:记忆巩固需要及时控制海马(对记忆形成很重要的大脑区域)和皮层(为记忆存储而募集的区域)之间的相互作用。在这里,我们显示记忆巩固与组蛋白的特定表观遗传修饰有关,这些蛋白在这些脑区具有明显的动态。在海马中,学习后组蛋白翻译后修饰(PTM)迅速而短暂地被激活,在皮层中它们被延迟诱导,但会随着时间的流逝而持续存在。当这些组蛋白PTM通过转基因干预或强化训练在体内增加时,它们有助于记忆巩固。相反,当它们在药理学上被阻断时,记忆巩固被削弱。这些组蛋白PTM还与立即早期基因zif268的表达相关,zif268是有助于记忆巩固的转录因子。这些发现揭示了记忆巩固过程中组蛋白标记的时空动态,并证明了其固有的“记忆”特性。

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