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海马体中谷氨酸受体-A 依赖性突触可塑性在条件学习中的作用:时空不连续性的重要性。

The role of hippocampal glutamate receptor-A-dependent synaptic plasticity in conditional learning: the importance of spatiotemporal discontiguity.

作者信息

Schmitt Wolfram B, Arianpour Roozbeh, Deacon Robert M J, Seeburg Peter H, Sprengel Rolf, Rawlins J Nicholas P, Bannerman David M

机构信息

Department of Experimental Psychology, University of Oxford, Oxford OX1 3UD, United Kingdom.

出版信息

J Neurosci. 2004 Aug 18;24(33):7277-82. doi: 10.1523/JNEUROSCI.1093-04.2004.

Abstract

Gene-targeted mice lacking the AMPA receptor subunit glutamate receptor-A (GluR-A or GluR1) and mice with cytotoxic hippocampal lesions were compared with wild-type and sham-operated controls, respectively, on a conditional learning task using an elevated T-maze. Floor inserts (white perspex vs wire mesh) provided a conditional cue indicating in which goal arm a food reward was to be found. The relationship between the floor insert and the rewarded goal arm was constant throughout the experiment. Both lesioned and knock-out mice were able to acquire the task if the floor inserts extended throughout the entire maze, including the start arm and both goal arms. In contrast, both lesioned and knock-out mice were unable to acquire the task if the floor inserts were only present in the start arm of the maze. The absence of the conditional cue (the floor insert) at the time when the place-reward association was experienced thus critically determined whether or not the mice were impaired. We suggest that hippocampal GluR-A-dependent synaptic plasticity contributes to a memory system in rodents for encoding both the spatial and temporal contexts (the where and the when) associated with a particular event.

摘要

将缺乏α-氨基-3-羟基-5-甲基-4-异恶唑丙酸(AMPA)受体亚基谷氨酸受体A(GluR-A或GluR1)的基因靶向小鼠和具有细胞毒性海马损伤的小鼠,分别与野生型和假手术对照组进行比较,采用高架T型迷宫进行条件学习任务。底部插入物(白色有机玻璃与金属丝网)提供了一个条件线索,指示在哪个目标臂可以找到食物奖励。在整个实验过程中,底部插入物与奖励目标臂之间的关系是恒定的。如果底部插入物延伸到整个迷宫,包括起始臂和两个目标臂,损伤小鼠和基因敲除小鼠都能够完成任务。相反,如果底部插入物仅存在于迷宫的起始臂中,损伤小鼠和基因敲除小鼠都无法完成任务。因此,在经历位置-奖励关联时缺乏条件线索(底部插入物),决定性地决定了小鼠是否受损。我们认为,海马体中依赖GluR-A的突触可塑性有助于啮齿动物的记忆系统,用于编码与特定事件相关的空间和时间背景(何处和何时)。

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