首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >RNA polymerase I transcription is modulated by spatial learning in different brain regions
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RNA polymerase I transcription is modulated by spatial learning in different brain regions

机译:RNA聚合酶I转录受不同脑区空间学习的调节

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摘要

Long-term memory is accompanied by changes in neuronal morphology and connectivity. These alterations are thought to depend upon new gene expression and protein synthesis over a distributed network of brain structures. Although much evidence supports the idea that the creation of stable, persistent memory traces requires synthesis of new proteins, the role of rRNA transcription and nucleolar activity in learning and memory has hardly been explored. rRNAs needed for protein synthesis result from the activity of two different RNA polymerases, RNA polymerase I and RNA polymerase III, transcribing for 47S RNA and 5S RNA, respectively. In this study, we first investigated the effects of spatial training in the Morris water maze on 47S RNA transcription in the central nervous system, demonstrating bidirectional modulation of its expression over a distributed neural network. We found learning-induced increases in the nucleolar organizer regions in the hippocampus. Finally, we demonstrated that intrahippocampal administrations of CX-5461 (0.6g/side), the specific RNA Polymerase I inhibitor, impair the ability of mice to locate the platform in the same task. These results suggest that de novo rRNA transcription is a necessary step for spatial memory consolidation, and that after learning, it occurs in several brain regions with a complex spatiotemporal dynamic.
机译:长期记忆伴随着神经元形态和连通性的变化。这些改变被认为依赖于大脑结构分布网络上的新基因表达和蛋白质合成。尽管有大量证据支持这样的观点,即创建稳定,持久的记忆轨迹需要合成新蛋白质,但几乎没有研究过rRNA转录和核仁活性在学习和记忆中的作用。蛋白质合成所需的rRNA来源于两种不同的RNA聚合酶(RNA聚合酶I和RNA聚合酶III)的活性,分别转录为47S RNA和5S RNA。在这项研究中,我们首先研究了莫里斯水迷宫中的空间训练对中枢神经系统中47S RNA转录的影响,证明了其在分布式神经网络上的表达双向调节。我们发现学习诱导的海马核仁组织者区域增加。最后,我们证明了CX-5461(0.6g /侧)(特异性RNA聚合酶I抑制剂)的海马内给药损害了小鼠在同一任务中定位平台的能力。这些结果表明从头rRNA转录是空间记忆巩固的必要步骤,并且在学习后,它发生在几个大脑区域,具有复杂的时空动态。

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