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Spatial memory deficits and motor coordination facilitation in cGMP-dependent protein kinase type II-deficient mice

机译:cGMP依赖性蛋白激酶II型缺陷小鼠的空间记忆缺陷和运动协调促进

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Activity-dependent trafficking of AMPA receptors to synapses regulates synaptic strength. Activation of the NMDA receptor induces several second messenger pathways that contribute to receptor trafficking-dependent plasticity, including the NO pathway, which elevates cGMP. In turn, cGMP activates the cGMP-dependent protein kinase type II (cGKII), which phosphorylates the AMPA receptor subunit GluA1 at serine 845, a critical step facilitating synaptic delivery in the mechanism of activity-dependent synaptic potentiation. Since cGKII is expressed in the striatum, amygdala, cerebral cortex, and hippocampus, it has been proposed that mice lacking cGKII may present phenotypic differences compared to their wild-type littermates in emotion-dependent tasks, learning and memory, and drug reward salience. Previous studies have shown that cGKII KO mice ingest higher amounts of ethanol as well as exhibit elevated anxiety levels compared to wild-type (WT) littermates. Here, we show that cGKII KO mice are significantly deficient in spatial learning while exhibiting facilitated motor coordination, demonstrating a clear dependence of memory-based tasks on cGKII. We also show diminished GluA1 phosphorylation in the postsynaptic density (PSD) of cGKII KO prefrontal cortex while in hippocampal PSD fractions, phosphorylation was not significantly altered. These data suggest that the role of cGKII may be more robust in particular brain regions, thereby impacting complex behaviors dependent on these regions differently. (c) 2012 Elsevier Inc. All rights reserved.
机译:依赖于活性的AMPA受体向突触的转运调节突触强度。 NMDA受体的激活会诱导一些第二信使途径,这些途径有助于受体依赖于可塑性的可塑性,包括NO途径,这会提高cGMP。反过来,cGMP激活cGMP依赖性蛋白激酶II型(cGKII),后者使丝氨酸845处的AMPA受体亚基GluA1磷酸化,这是在依赖于活性的突触增强机制中促进突触传递的关键步骤。由于cGKII在纹状体,杏仁核,大脑皮层和海马中表达,因此有人提出,与野生型同窝仔相比,缺乏cGKII的小鼠在依赖情感的任务,学习和记忆以及药物报酬显着性方面可能表现出表型差异。先前的研究表明,与野生型(WT)同窝仔相比,cGKII KO小鼠摄入更多的乙醇,并且表现出更高的焦虑水平。在这里,我们显示cGKII KO小鼠在空间学习上显着不足,同时表现出促进的运动协调性,表明基于记忆的任务对cGKII的明显依赖性。我们还显示,cGKII KO前额叶皮层的突触后密度(PSD)中的GluA1磷酸化减弱,而在海马PSD组分中,磷酸化没有明显改变。这些数据表明,cGKII在特定的大脑区域中的作用可能更强健,从而以不同的方式影响依赖于这些区域的复杂行为。 (c)2012 Elsevier Inc.保留所有权利。

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