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PERIOD1 协调海马体节律和日间记忆处理。

PERIOD1 coordinates hippocampal rhythms and memory processing with daytime.

机构信息

Institute of Cellular and Molecular Anatomy, Dr. Senckenbergische Anatomie, Goethe-University, Theodor-Stern-Kai 7, Frankfurt, Germany.

出版信息

Hippocampus. 2014 Jun;24(6):712-23. doi: 10.1002/hipo.22262. Epub 2014 Mar 4.

Abstract

In species ranging from flies to mammals, parameters of memory processing, like acquisition, consolidation, and retrieval are clearly molded by time of day. However, mechanisms that regulate and adapt these temporal differences are elusive, with an involvement of clock genes and their protein products suggestive. Therefore, we analyzed initially in mouse hippocampus the daytime-dependent dynamics of parameters, known to be important for proper memory formation, like phosphorylation of the "memory molecule" cyclic adenosine monophosphate (cAMP) responsive element binding protein (CREB) and chromatin remodeling. Next, in an effort to characterize the mechanistic role of clock genes within hippocampal molecular dynamics, we compared the results obtained from wildtype (WT) -mice and mice deficient for the archetypical clock gene Period1 (Per1(-/-) -mice). We detected that the circadian rhythm of CREB phosphorylation in the hippocampus of WT mice disappeared completely in mice lacking Per1. Furthermore, we found that the here for the first time described profound endogenous day/night rhythms in histone modifications in the hippocampus of WT-mice are markedly perturbed in Per1(-/-) -mice. Concomitantly, both, in vivo recorded LTP, a cellular correlate for long-term memory, and hippocampal gene expression were significantly altered in the absence of Per1. Notably, these molecular perturbations in Per1(-/-) -mice were accompanied by the loss of daytime-dependent differences in spatial working memory performance. Our data provide a molecular blueprint for a novel role of PER1 in temporally shaping the daytime-dependency of memory performance, likely, by gating CREB signaling, and by coupling to downstream chromatin remodeling.

摘要

在从苍蝇到哺乳动物等物种中,记忆处理的参数,如获取、巩固和检索,显然受到时间的影响。然而,调节和适应这些时间差异的机制尚不清楚,时钟基因及其蛋白产物的参与表明了这一点。因此,我们最初在小鼠海马体中分析了已知对适当记忆形成很重要的参数的日间依赖性动态变化,如“记忆分子”环磷酸腺苷(cAMP)反应元件结合蛋白(CREB)的磷酸化和染色质重塑。接下来,为了在海马体分子动力学中表征时钟基因的机制作用,我们比较了野生型(WT)-小鼠和典型时钟基因 Period1(Per1(-/-) -小鼠)缺失的小鼠的结果。我们发现,WT 小鼠海马体中 CREB 磷酸化的昼夜节律完全消失在缺乏 Per1 的小鼠中。此外,我们发现,这里首次描述的 WT 小鼠海马体中组蛋白修饰的深刻内源性昼夜节律在 Per1(-/-) -小鼠中明显受到干扰。同时,体内记录的长时程增强(LTP)作为长期记忆的细胞相关性,以及海马体基因表达在缺乏 Per1 的情况下显著改变。值得注意的是,这些 Per1(-/-) -小鼠中的分子扰动伴随着空间工作记忆性能的日间依赖性差异的丧失。我们的数据为 PER1 在时间上塑造记忆性能的日间依赖性的新作用提供了分子蓝图,可能通过门控 CREB 信号转导,并与下游染色质重塑偶联。

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