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Skill Learning Modulates RNA Pol II Poising at Immediate Early Genes in the Adult Striatum

机译:技能学习调节成年纹状体中立即早期基因的RNA Pol II平衡

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摘要

A multilayered complexity of epigenetic and transcriptional regulatory mechanisms underlies neuronal activity-dependent gene transcription. The regulation of RNA Pol II progression along the transcription cycle, from promoter-proximal poising (with RNA Pol II paused at promoter-proximal regions, characterized by a Ser5P+-rich and Ser2P+-poor RPB1 CTD) to active elongation, has emerged as a major step in transcriptional regulation across several organisms, tissues, and developmental stages, including the nervous system. However, it is not known whether this mechanism is modulated by experience. We investigated the impact of learning a motor skill on RNA Pol II phosphorylation dynamics in the adult mouse striatum. We uncovered that learning modulates the in vivo striatal phosphorylation dynamics of the CTD of the RNA Pol II RPB1 subunit, leading to an increased poising index in trained mice. We found that this modulation occurs at immediate early genes (IEGs), with increased poising of RNA Pol II at both Arc and Fos genes but not at constitutively expressed genes. Furthermore, we confirmed that this was learning dependent, and not just regulated by context or motor activity. These experiments demonstrate a novel phenomenon of learning induced transcriptional modulation in adult brain, which may have implications for our understanding of learning, memory allocation, and consolidation.
机译:表观遗传和转录调控机制的多层复杂性是神经元活动依赖性基因转录的基础。从启动子近端开始调节RNA Pol II沿着转录循环的进程(RNA Pol II停在启动子近端区域,其特征是富含Ser5P + 和Ser2P + < / sup>-差的RPB1 CTD)主动延伸,已经成为跨多种生物,组织和发育阶段(包括神经系统)的转录调控的重要步骤。但是,尚不清楚这种机制是否受经验影响。我们调查了学习运动技能对成年小鼠纹状体中RNA Pol II磷酸化动力学的影响。我们发现,学习调节RNA Pol II RPB1亚基CTD的体内纹状体磷酸化动力学,从而导致受过训练的小鼠的平衡指数增加。我们发现这种调节发生在立即早期基因(IEGs),在Arc和Fos基因上都增加了RNA Pol II的平衡,但在组成型表达基因上却没有。此外,我们确认这是学习依赖的,而不仅仅是受情境或运动活动的调节。这些实验证明了一种在成人大脑中学习诱导转录调节的新现象,这可能对我们对学习,记忆分配和巩固的理解有影响。

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