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Epigenetic Alterations Are Critical for Fear Memory Consolidation and Synaptic Plasticity in the Lateral Amygdala

机译:表观遗传改变对于杏仁核外侧的恐惧记忆巩固和突触可塑性至关重要

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摘要

Epigenetic mechanisms, including histone acetylation and DNA methylation, have been widely implicated in hippocampal-dependent learning paradigms. Here, we have examined the role of epigenetic alterations in amygdala-dependent auditory Pavlovian fear conditioning and associated synaptic plasticity in the lateral nucleus of the amygdala (LA) in the rat. Using Western blotting, we first show that auditory fear conditioning is associated with an increase in histone H3 acetylation and DNMT3A expression in the LA, and that training-related alterations in histone acetylation and DNMT3A expression in the LA are downstream of ERK/MAPK signaling. Next, we show that intra-LA infusion of the histone deacetylase (HDAC) inhibitor TSA increases H3 acetylation and enhances fear memory consolidation; that is, long-term memory (LTM) is enhanced, while short-term memory (STM) is unaffected. Conversely, intra-LA infusion of the DNA methyltransferase (DNMT) inhibitor 5-AZA impairs fear memory consolidation. Further, intra-LA infusion of 5-AZA was observed to impair training-related increases in H3 acetylation, and pre-treatment with TSA was observed to rescue the memory consolidation deficit induced by 5-AZA. In our final series of experiments, we show that bath application of either 5-AZA or TSA to amygdala slices results in significant impairment or enhancement, respectively, of long-term potentiation (LTP) at both thalamic and cortical inputs to the LA. Further, the deficit in LTP following treatment with 5-AZA was observed to be rescued at both inputs by co-application of TSA. Collectively, these findings provide strong support that histone acetylation and DNA methylation work in concert to regulate memory consolidation of auditory fear conditioning and associated synaptic plasticity in the LA.
机译:表观遗传机制,包括组蛋白乙酰化和DNA甲基化,已广泛涉及海马依赖性学习范式。在这里,我们已经检查了表观遗传改变在杏仁核依赖性听觉巴甫洛夫式恐惧条件和大鼠杏仁核(LA)外侧核中相关突触可塑性的作用。使用Western印迹,我们首先显示听觉恐惧条件与LA中组蛋白H3乙酰化和DNMT3A表达的增加有关,而LA中组蛋白乙酰化和DNMT3A表达的训练相关变化是ERK / MAPK信号的下游。接下来,我们显示组内去乙酰化酶(HDAC)抑制剂TSA的LA内输注增加了H3乙酰化并增强了恐惧记忆的巩固;也就是说,增强了长期记忆(LTM),而短期记忆(STM)不受影响。相反,LA内注入DNA甲基转移酶(DNMT)抑制剂5-AZA会削弱恐惧记忆的巩固。此外,观察到LA内5-AZA的注入会损害与训练相关的H3乙酰化的增加,并观察到用TSA预处理可以挽救5-AZA诱导的记忆巩固缺陷。在我们的最后一系列实验中,我们显示了在杏仁核切片上应用5-AZA或TSA分别导致在丘脑和皮质输入处的长期增强(LTP)的显着损害或增强。此外,观察到通过联合施用TSA,在两种输入下都可以挽救5-AZA治疗后LTP的不足。总的来说,这些发现为组蛋白乙酰化和DNA甲基化共同作用以调节听觉恐惧条件的记忆巩固和相关的突触可塑性提供了有力的支持。

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