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大脑前部特异性锥体神经元中 Cdk5 的缺失导致躁狂样行为和认知障碍。

Forebrain-specific deletion of Cdk5 in pyramidal neurons results in mania-like behavior and cognitive impairment.

机构信息

The Picower Institute for Learning and Memory, Department of Brain and Cognitive Sciences, Massachusetts Institute of Technology, Cambridge, MA, United States; Howard Hughes Medical Institute, Massachusetts Institute of Technology, Cambridge, MA, United States.

出版信息

Neurobiol Learn Mem. 2013 Oct;105:54-62. doi: 10.1016/j.nlm.2013.06.016. Epub 2013 Jul 11.

Abstract

Cyclin-dependent kinase 5 (Cdk5) is associated with synaptic plasticity and cognitive function. Previous reports have demonstrated that Cdk5 is necessary for memory formation, although others have reported Cdk5 conditional knockout mouse models exhibiting enhanced learning and memory. Furthermore, how Cdk5 acts in specific cell populations to affect behavior and cognitive outcomes remains unclear. Here we conduct a behavioral characterization of a forebrain-specific Cdk5 conditional knockout mouse model under the αCaMKII promoter, in which Cdk5 is ablated in excitatory pyramidal neurons of the forebrain. The Cdk5 conditional knockouts exhibit hyperactivity in the open field, reduced anxiety, and reduced behavioral despair. Moreover, the Cdk5 conditional knockouts also display impaired spatial learning in the Morris water maze and are severely impaired in contextual fear memory, which correspond to deficits in synaptic transmission. Remarkably, the hyperactivity of the Cdk5 conditional knockouts can be ameliorated by the administration of lithium chloride, an inhibitor of GSK3β signaling. Collectively, our data reveal that Cdk5 ablation from forebrain excitatory neurons results in deleterious effects on emotional and cognitive behavior and highlight a key role for Cdk5 in regulating the GSK3β signaling pathway.

摘要

周期蛋白依赖性激酶 5(Cdk5)与突触可塑性和认知功能有关。先前的研究表明,Cdk5 是记忆形成所必需的,尽管也有报道称 Cdk5 条件敲除小鼠模型表现出学习和记忆能力增强。此外,Cdk5 如何在特定细胞群体中发挥作用以影响行为和认知结果尚不清楚。在这里,我们使用αCaMKII 启动子对大脑特异性 Cdk5 条件敲除小鼠模型进行了行为特征分析,在此模型中,大脑中的兴奋性锥体神经元中 Cdk5 被剔除。Cdk5 条件敲除小鼠在旷场中表现出过度活跃,焦虑减少,行为绝望减少。此外,Cdk5 条件敲除小鼠还表现出在 Morris 水迷宫中的空间学习受损,并且在情景性恐惧记忆中严重受损,这与突触传递缺陷相对应。值得注意的是,Cdk5 条件敲除小鼠的过度活跃可以通过给予氯化锂来改善,氯化锂是 GSK3β 信号的抑制剂。总的来说,我们的数据表明,大脑中兴奋性神经元的 Cdk5 缺失会对情绪和认知行为产生有害影响,并强调了 Cdk5 在调节 GSK3β 信号通路中的关键作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4454/3775577/4e4d250aeff2/nihms504624f1.jpg

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