International Institute for Integrative Sleep Medicine (WPI-IIIS), University of Tsukuba, Tsukuba, Ibaraki, Japan.
Doctoral Program in Neuroscience, Degree Programs in Comprehensive Human Sciences, Graduate School of Comprehensive Human Sciences, University of Tsukuba, Tsukuba, Ibaraki, Japan.
Mol Brain. 2021 Feb 10;14(1):30. doi: 10.1186/s13041-021-00733-6.
Metabolites underlying brain function and pathology are not as well understood as genes. Here, we applied a novel metabolomics approach to further understand the mechanisms of memory processing in sleep. As hippocampal dentate gyrus neurons are known to consolidate contextual fear memory, we analyzed real-time changes in metabolites in the dentate gyrus in different sleep-wake states in mice. Throughout the study, we consistently detected more than > 200 metabolites. Metabolite profiles changed dramactically upon sleep-wake state transitions, leading to a clear separation of phenotypes between wakefulness and sleep. By contrast, contextual fear memory consolidation induced less obvious metabolite phenotypes. However, changes in purine metabolites were observed upon both sleep-wake state transitions and contextual fear memory consolidation. Dietary supplementation of certain purine metabolites impaired correlations between conditioned fear responses before and after memory consolidation. These results point toward the importance of purine metabolism in fear memory processing during sleep.
代谢物在大脑功能和病理方面的作用还不如基因那样被人们所了解。在这里,我们应用一种新的代谢组学方法来进一步了解睡眠中记忆处理的机制。已知海马齿状回神经元可巩固情景性恐惧记忆,因此我们分析了在不同睡眠-觉醒状态下小鼠齿状回中代谢物的实时变化。在整个研究过程中,我们始终检测到超过 200 种代谢物。代谢物谱在睡眠-觉醒状态转换时发生剧烈变化,导致清醒和睡眠之间的表型明显分离。相比之下,情景性恐惧记忆巩固引起的代谢物表型变化则不那么明显。然而,嘌呤代谢物的变化既发生在睡眠-觉醒状态转换时,也发生在情景性恐惧记忆巩固时。补充某些嘌呤代谢物会损害记忆巩固前后条件性恐惧反应之间的相关性。这些结果表明嘌呤代谢在睡眠期间的恐惧记忆处理中很重要。