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Hippocampal Cortactin Levels are Reduced Following Spatial Working Memory Formation, an Effect Blocked by Chronic Calpain Inhibition

机译:空间工作记忆形成后,海马Cortactin水平降低,这种作用被慢性钙蛋白酶抑制所阻断

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摘要

The mechanism by which the hippocampus facilitates declarative memory formation appears to involve, among other things, restructuring of the actin cytoskeleton within neuronal dendrites. One protein involved in this process is cortactin, which is an important link between extracellular signaling and cytoskeletal reorganization. In this paper, we demonstrate that total hippocampal cortactin, as well as Y421-phosphorylated cortactin are transiently reduced following spatial working memory formation in the radial arm maze (RAM). Because cortactin is a substrate of the cysteine protease calpain, we also assessed the effect of chronic calpain inhibition on RAM performance and cortactin expression. Calpain inhibition impaired spatial working memory and blocked the reduction in hippocampal cortactin levels following RAM training. These findings add to a growing body of research implicating cortactin and calpain in hippocampus-dependent memory formation.
机译:海马促进声明性记忆形成的机制似乎涉及神经元树突中肌动蛋白细胞骨架的重组等。参与此过程的一种蛋白质是cortactin,它是细胞外信号传导与细胞骨架重组之间的重要联系。在本文中,我们证明了在hip臂迷宫(RAM)中形成空间工作记忆后,总海马cortactin以及Y421磷酸化cortactin会暂时减少。由于cortactin是半胱氨酸蛋白酶calpain的底物,因此我们还评估了慢性calpain抑制对RAM性能和cortactin表达的影响。钙蛋白酶抑制削弱了空间工作记忆并阻止了RAM训练后海马cortactin水平的降低。这些发现增加了越来越多的研究涉及海马依赖记忆形成中的cortactin和钙蛋白酶。

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