首页> 美国卫生研究院文献>The Journal of Neuroscience >The DNA Repair-Associated Protein Gadd45γ Regulates the Temporal Coding of Immediate Early Gene Expression within the Prelimbic Prefrontal Cortex and Is Required for the Consolidation of Associative Fear Memory
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The DNA Repair-Associated Protein Gadd45γ Regulates the Temporal Coding of Immediate Early Gene Expression within the Prelimbic Prefrontal Cortex and Is Required for the Consolidation of Associative Fear Memory

机译:DNA修复相关蛋白Gadd45γ调节前缘前额叶皮层内立即早期基因表达的时间编码并且是巩固恐惧记忆的必需条件

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摘要

We have identified a member of the growth arrest and DNA damage (Gadd45) protein family, Gadd45γ, which is known to be critically involved in DNA repair, as a key player in the regulation of immediate early gene (IEG) expression underlying the consolidation of associative fear memory in adult male C57BL/6 mice. Gadd45γ temporally influences learning-induced IEG expression in the prelimbic prefrontal cortex (PLPFC) through its interaction with DNA double-strand break (DSB)-mediated changes in DNA methylation. Our findings suggest a two-hit model of experience-dependent IEG activity and learning that comprises (1) a first wave of IEG expression governed by DSBs and followed by a rapid increase in DNA methylation, and (2) a second wave of IEG expression associated with the recruitment of Gadd45γ and active DNA demethylation at the same site, which is necessary for memory consolidation.>SIGNIFICANCE STATEMENT How does the pattern of immediate early gene transcription in the brain relate to the storage and accession of information, and what controls these patterns? This paper explores how Gadd45γ, a gene that is known to be involved with DNA modification and repair, regulates the temporal coding of IEGs underlying associative learning and memory. We reveal that, during fear learning, Gadd45γ serves to act as a coordinator of IEG expression and subsequent memory consolidation by directing temporally specific changes in active DNA demethylation at the promoter of plasticity-related IEGs.
机译:我们已经确定了生长停滞和DNA损伤(Gadd45)蛋白家族的成员Gadd45γ(众所周知,它主要参与DNA修复)是调节整合后潜在的早期早期基因(IEG)表达的关键参与者。成年雄性C57BL / 6小鼠的联想恐惧记忆。 Gadd45γ通过与DNA双链断裂(DSB)介导的DNA甲基化变化的相互作用,暂时影响前肢前额叶皮层(PLPFC)中学习诱导的IEG表达。我们的发现表明,经验依赖的IEG活动和学习受到两重打击,其中包括(1)由DSB控制的IEG表达的第一波,随后DNA甲基化的迅速增加,以及(2)IEG表达的第二波与在同一位点募集Gadd45γ和活跃的DNA去甲基化有关,这对于记忆巩固是必需的。>意义声明脑中立即早期基因转录的模式与脑膜的贮藏和吸收有何关系?信息,什么控制这些模式?本文探讨了Gadd45γ这个已知与DNA修饰和修复有关的基因如何调控IEG在相关学习和记忆中的时间编码。我们揭示,在恐惧学习过程中,Gadd45γ通过在可塑性相关IEGs的启动子上指导活性DNA去甲基化的时间特异性变化,充当IEG表达和随后的记忆巩固的协调者。

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