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How the epigenome integrates information and reshapes the synapse

机译:表观蛋白酶如何整合信息并重新成像突触

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In the past few decades, the field of neuroepigenetics has investigated how the brain encodes information to form long-lasting memories that lead to stable changes in behaviour. Activity-dependent molecular mechanisms, including, but not limited to, histone modification, DNA methylation and nucleosome remodelling, dynamically regulate the gene expression required for memory formation. Recently, the field has begun to examine how a learning experience is integrated at the level of both chromatin structure and synaptic physiology. Here, we provide an overview of key established epigenetic mechanisms that are important for memory formation. We explore how epigenetic mechanisms give rise to stable alterations in neuronal function by modifying synaptic structure and function, and highlight studies that demonstrate how manipulating epigenetic mechanisms may push the boundaries of memory.
机译:在过去的几十年中,神经目标的领域已经研究了大脑如何编码信息,形成长期的记忆,从而导致行为稳定的变化。 活性依赖性分子机制,包括但不限于组蛋白修饰,DNA甲基化和核小体重塑,动态调节记忆形成所需的基因表达。 最近,该领域已经开始检查学习经验如何在染色质结构和突触生理学的水平上集成。 在这里,我们提供关键建立的表观遗传机制概述,这对内存形成是重要的。 我们探讨EPigeNetic机制如何通过修改突触结构和功能来产生神经元功能的稳定改变,并突出显示操作的表观遗传机制如何推动记忆的界限。

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