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记忆对声音时间特征的特异性是通过抑制一种表观遗传调节剂来增强时间编码的线索选择性而形成的。

Memory Specific to Temporal Features of Sound Is Formed by Cue-Selective Enhancements in Temporal Coding Enabled by Inhibition of an Epigenetic Regulator.

机构信息

Department of Psychology, Rutgers, The State University of New Jersey, Piscataway, New Jersey 08854

Department of Psychology, Rutgers, The State University of New Jersey, Piscataway, New Jersey 08854.

出版信息

J Neurosci. 2021 Nov 3;41(44):9192-9209. doi: 10.1523/JNEUROSCI.0691-21.2021. Epub 2021 Sep 20.

Abstract

Recent investigation of memory-related functions in the auditory system have capitalized on the use of memory-modulating molecules to probe the relationship between memory and substrates of memory in auditory system coding. For example, epigenetic mechanisms, which regulate gene expression necessary for memory consolidation, are powerful modulators of learning-induced neuroplasticity and long-term memory (LTM) formation. Inhibition of the epigenetic regulator histone deacetylase 3 (HDAC3) promotes LTM, which is highly specific for spectral features of sound. The present work demonstrates for the first time that HDAC3 inhibition also enables memory for temporal features of sound. Adult male rats trained in an amplitude modulation (AM) rate discrimination task and treated with a selective inhibitor of HDAC3 formed memory that was highly specific to the AM rate paired with reward. Sound-specific memory revealed behaviorally was associated with a signal-specific enhancement in temporal coding in the auditory system; stronger phase locking that was specific to the rewarded AM rate was revealed in both the surface-recorded frequency following response and auditory cortical multiunit activity in rats treated with the HDAC3 inhibitor. Furthermore, HDAC3 inhibition increased trial-to-trial cortical response consistency (relative to naive and trained vehicle-treated rats), which generalized across different AM rates. Stronger signal-specific phase locking correlated with individual behavioral differences in memory specificity for the AM signal. These findings support that epigenetic mechanisms regulate activity-dependent processes that enhance discriminability of sensory cues encoded into LTM in both spectral and temporal domains, which may be important for remembering spectrotemporal features of sounds, for example, as in human voices and speech. Epigenetic mechanisms have recently been implicated in memory and information processing. Here, we use a pharmacological inhibitor of HDAC3 in a sensory model of learning to reveal the ability of HDAC3 to enable precise memory for amplitude-modulated sound cues. In so doing, we uncover neural substrates for memory's specificity for temporal sound cues. Memory specificity was supported by auditory cortical changes in temporal coding, including greater response consistency and stronger phase locking. HDAC3 appears to regulate effects across domains that determine specific cue saliency for behavior. Thus, epigenetic players may gate how sensory information is stored in long-term memory and can be leveraged to reveal the neural substrates of sensory details stored in memory.

摘要

最近,听觉系统中的记忆相关功能的研究利用记忆调节分子来探索记忆与听觉系统编码中记忆基质之间的关系。例如,表观遗传机制调节记忆巩固所需的基因表达,是学习诱导的神经可塑性和长时记忆(LTM)形成的有力调节剂。组蛋白去乙酰化酶 3(HDAC3)的抑制促进了 LTM,这种 LTM 高度特异性于声音的光谱特征。本研究首次证明,HDAC3 抑制也能使声音的时间特征产生记忆。在幅度调制(AM)率辨别任务中接受训练的成年雄性大鼠,并接受选择性 HDAC3 抑制剂治疗,形成了对与奖励相关的 AM 率的高度特异性记忆。行为上揭示的声音特异性记忆与听觉系统中时间编码的信号特异性增强相关;在接受 HDAC3 抑制剂治疗的大鼠中,在表面记录的频率跟随反应和听觉皮层多单位活动中,都发现了与奖励 AM 率特异性更强的相位锁定。此外,HDAC3 抑制增加了皮层反应的试验间一致性(相对于未治疗和训练的载体处理大鼠),这种一致性在不同的 AM 率之间也有体现。更强的信号特异性相位锁定与记忆对 AM 信号特异性的个体行为差异相关。这些发现支持表观遗传机制调节活动依赖性过程,这些过程增强了 LTM 中编码的感觉线索的可辨别性,包括光谱和时间域,这对于记住声音的时频特征可能很重要,例如在人类声音和言语中。表观遗传机制最近与记忆和信息处理有关。在这里,我们在学习的感觉模型中使用 HDAC3 的药理学抑制剂来揭示 HDAC3 使 AM 声音线索产生精确记忆的能力。通过这种方式,我们揭示了记忆对时间声音线索特异性的神经基质。听觉皮层在时间编码中的变化支持了记忆的特异性,包括更强的反应一致性和更强的相位锁定。HDAC3 似乎调节了跨域的效应,这些效应决定了行为中特定线索的突出性。因此,表观遗传因子可能会控制感觉信息在长期记忆中的存储方式,并可用于揭示存储在记忆中的感觉细节的神经基质。

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