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通过RGFP966抑制组蛋白去乙酰化酶3有助于促进皮质可塑性,这种可塑性是兴奋性和抑制性线索-奖励关联的异常精确听觉联想线索记忆的基础。

Inhibition of histone deacetylase 3 via RGFP966 facilitates cortical plasticity underlying unusually accurate auditory associative cue memory for excitatory and inhibitory cue-reward associations.

作者信息

Shang Andrea, Bylipudi Sooraz, Bieszczad Kasia M

机构信息

Department of Psychology, Behavioral & Systems Neuroscience, Rutgers The State University of New Jersey, 152 Frelinghuysen Road, Piscataway, NJ, 08854 USA.

Department of Psychology, Behavioral & Systems Neuroscience, Rutgers The State University of New Jersey, 152 Frelinghuysen Road, Piscataway, NJ, 08854 USA.

出版信息

Behav Brain Res. 2019 Jan 1;356:453-469. doi: 10.1016/j.bbr.2018.05.036. Epub 2018 May 31.

Abstract

Epigenetic mechanisms are key for regulating long-term memory (LTM) and are known to exert control on memory formation in multiple systems of the adult brain, including the sensory cortex. One epigenetic mechanism is chromatin modification by histone acetylation. Blocking the action of histone de-acetylases (HDACs) that normally negatively regulate LTM by repressing transcription has been shown to enable memory formation. Indeed, HDAC inhibition appears to facilitate memory by altering the dynamics of gene expression events important for memory consolidation. However, less understood are the ways in which molecular-level consolidation processes alter subsequent memory to enhance storage or facilitate retrieval. Here we used a sensory perspective to investigate whether the characteristics of memory formed with HDAC inhibitors are different from naturally-formed memory. One possibility is that HDAC inhibition enables memory to form with greater sensory detail than normal. Because the auditory system undergoes learning-induced remodeling that provides substrates for sound-specific LTM, we aimed to identify behavioral effects of HDAC inhibition on memory for specific sound features using a standard model of auditory associative cue-reward learning, memory, and cortical plasticity. We found that three systemic post-training treatments of an HDAC3-inhibitor (RGPF966, Abcam Inc.) in rats in the early phase of training facilitated auditory discriminative learning, changed auditory cortical tuning, and increased the specificity for acoustic frequency formed in memory of both excitatory (S+) and inhibitory (S-) associations for at least 2 weeks. The findings support that epigenetic mechanisms act on neural and behavioral sensory acuity to increase the precision of associative cue memory, which can be revealed by studying the sensory characteristics of long-term associative memory formation with HDAC inhibitors.

摘要

表观遗传机制是调节长期记忆(LTM)的关键,已知其对成年大脑的多个系统(包括感觉皮层)中的记忆形成发挥控制作用。一种表观遗传机制是通过组蛋白乙酰化进行染色质修饰。阻断通常通过抑制转录对LTM起负调节作用的组蛋白脱乙酰酶(HDACs)的作用已被证明能够促进记忆形成。事实上,HDAC抑制似乎通过改变对记忆巩固重要的基因表达事件的动态来促进记忆。然而,分子水平的巩固过程如何改变后续记忆以增强存储或促进检索,目前尚不清楚。在这里,我们从感觉角度研究了用HDAC抑制剂形成的记忆特征是否与自然形成的记忆不同。一种可能性是,HDAC抑制使记忆能够以比正常情况更丰富的感觉细节形成。由于听觉系统会经历学习诱导的重塑,为特定声音的LTM提供底物,我们旨在使用听觉联想线索-奖励学习、记忆和皮质可塑性的标准模型,确定HDAC抑制对特定声音特征记忆的行为影响。我们发现,在训练早期对大鼠进行三次系统性的HDAC3抑制剂(RGPF966,Abcam公司)训练后处理,促进了听觉辨别学习,改变了听觉皮层调谐,并提高了对兴奋性(S+)和抑制性(S-)联想记忆中形成的声频的特异性,至少持续两周。这些发现支持表观遗传机制作用于神经和行为感觉敏锐度,以提高联想线索记忆的精度,这可以通过研究用HDAC抑制剂形成的长期联想记忆的感觉特征来揭示。

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