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表达即刻早期基因的CA1神经元集群由情境转换驱动,在持续存在时缩小,并且不受任务需求变化的影响。

CA1 ensembles expressing immediate-early genes are driven by context switch, shrink with sustained presence, and show no effect of change of task demands.

作者信息

Krajcovic Branislav, Cernotova Daniela, Buchtova Helena, Stuchlik Ales, Kubik Stepan, Svoboda Jan

机构信息

Laboratory of Neurophysiology of Memory, Institute of Physiology, Czech Academy of Sciences, Prague, Czechia; Third Faculty of Medicine, Charles University, Prague, Czechia.

Laboratory of Neurophysiology of Memory, Institute of Physiology, Czech Academy of Sciences, Prague, Czechia; Third Faculty of Medicine, Charles University, Prague, Czechia.

出版信息

Behav Brain Res. 2025 Mar 5;480:115407. doi: 10.1016/j.bbr.2024.115407. Epub 2024 Dec 20.

Abstract

The hippocampus (HPC) is essential for navigation and memory, tracking environmental continuity and change, including navigation relative to moving targets. CA1 ensembles expressing immediate-early gene (IEG) Arc and Homer1a RNA are contextually specific. While IEG expression correlates with HPC-dependent task demands, the effects of behavioral demands on IEG-expressing ensembles remain unclear. In three experiments, we investigated the effects of context switch, sustained presence, and task demands on dorso-proximal CA1 IEG+ ensembles in rats. Experiment 1 showed that the size of IEG+ (Arc, Homer1a RNA) ensembles dropped to baseline during uninterrupted 30-min exploration, reflecting familiarization, unless a context switch was present. Context-specificity of the ensembles depended on both environment identity and timing of the context switch. Experiment 2 found no effect of HPC-dependent mobile robot avoidance or HPC-independent avoidance of a stationary robot on IEG+ ensembles beyond mere exploration. Experiment 3 replicated these findings for c-Fos protein. The data suggest that IEG+ ensembles are driven by a context switch and shrink over time during sustained presence in the same environment. We found no evidence of task demands or their change affecting the size, stability over time, or task-specificity of IEG+ ensembles. These results shed light on the temporal dynamics of CA1 IEG+ ensembles, and their control by contextual and behavioral factors.

摘要

海马体(HPC)对于导航和记忆、追踪环境的连续性和变化(包括相对于移动目标的导航)至关重要。表达即刻早期基因(IEG)Arc和Homer1a RNA的CA1神经元集群具有情境特异性。虽然IEG表达与依赖HPC的任务需求相关,但行为需求对表达IEG的神经元集群的影响仍不清楚。在三个实验中,我们研究了情境切换、持续存在和任务需求对大鼠背侧近端CA1区IEG+神经元集群的影响。实验1表明,在不间断的30分钟探索过程中,IEG+(Arc、Homer1a RNA)神经元集群的大小降至基线水平,这反映了熟悉过程,除非存在情境切换。神经元集群的情境特异性取决于环境特征和情境切换的时间。实验2发现,依赖HPC的移动机器人回避或不依赖HPC的固定机器人回避对IEG+神经元集群的影响不超过单纯的探索。实验3对c-Fos蛋白重复了这些发现。数据表明,IEG+神经元集群由情境切换驱动,并且在同一环境中持续存在时会随时间缩小。我们没有发现任务需求或其变化影响IEG+神经元集群的大小、随时间的稳定性或任务特异性的证据。这些结果揭示了CA1区IEG+神经元集群的时间动态及其受情境和行为因素的控制。

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