Miller Courtney A, Campbell Susan L, Sweatt J David
Department of Neurobiology, Evelyn F. McKnight Brain Institute, University of Alabama at Birmingham, 1074 Shelby Building, 1825 University Boulevard, Birmingham, AL, USA.
Neurobiol Learn Mem. 2008 May;89(4):599-603. doi: 10.1016/j.nlm.2007.07.016. Epub 2007 Sep 18.
A clear understanding is developing concerning the importance of epigenetic-related molecular mechanisms in transcription-dependent long-term memory formation. Chromatin modification, in particular histone acetylation, is associated with transcriptional activation, and acetylation of histone 3 (H3) occurs in Area CA1 of the hippocampus following contextual fear conditioning training. Conversely, DNA methylation is associated with transcriptional repression, but is also dynamically regulated in Area CA1 following training. We recently reported that inhibition of the enzyme responsible for DNA methylation, DNA methyltransferase (DNMT), in the adult rat hippocampus blocks behavioral memory formation. Here, we report that DNMT inhibition also blocks the concomitant memory-associated H3 acetylation, without affecting phosphorylation of its upstream regulator, extracellular signal-regulated kinase (ERK). Interestingly, the DNMT inhibitor-induced deficit in memory consolidation, along with deficits in long-term potentiation, can be rescued by pharmacologically increasing levels of histone acetylation prior to DNMT inhibition. These observations suggest that DNMT activity is not only necessary for memory and plasticity, but that DNA methylation may work in concert with histone modifications to regulate plasticity and memory formation in the adult rat hippocampus.
关于表观遗传相关分子机制在转录依赖性长期记忆形成中的重要性,人们正在形成清晰的认识。染色质修饰,特别是组蛋白乙酰化,与转录激活相关,并且在情境恐惧条件训练后,海马体CA1区会发生组蛋白3(H3)的乙酰化。相反,DNA甲基化与转录抑制相关,但在训练后的CA1区也受到动态调节。我们最近报道,在成年大鼠海马体中抑制负责DNA甲基化的酶——DNA甲基转移酶(DNMT),会阻断行为记忆的形成。在此,我们报告DNMT抑制也会阻断伴随记忆出现的H3乙酰化,而不影响其上游调节因子细胞外信号调节激酶(ERK)的磷酸化。有趣的是,在DNMT抑制之前通过药理学方法提高组蛋白乙酰化水平,可以挽救DNMT抑制剂诱导的记忆巩固缺陷以及长期增强效应缺陷。这些观察结果表明,DNMT活性不仅对记忆和可塑性是必需的,而且DNA甲基化可能与组蛋白修饰协同作用,以调节成年大鼠海马体中的可塑性和记忆形成。