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Upregulated SK2 Expression and Impaired CaMKII Phosphorylation AreShared Synaptic Defects Between 16p11.2del and 129S:Δdisc1Mutant Mice

机译:上调SK2表达和受损的CaMKII磷酸化是。16p11.2del和129S:Δdisc1之间共有的突触缺陷突变小鼠

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摘要

Ion channel gating and kinase regulation of N-methyl-D-aspartate receptor 1 activity are fundamental mechanisms that govern synaptic plasticity. In this study, we showed that two mutant models (16p11.2del and Δdisc1) that recapitulate aspects of human cognitive disorders shared a similar defect in N-methyl-D-aspartate receptor 1-dependent synaptic function. Our results demonstrate that the expression of small-conductance potassium channels (SK2 or KCa2.2) was significantly upregulated in the hippocampus and prefrontal cortex of 16p11.2del and 129S:Δdisc1 mutant mice. Likewise, both mutant strains exhibited an impairment of T286 phosphorylation of calcium-calmodulin-dependent kinase II (CaMKII) in the hippocampus and prefrontal cortex. In vivo neural recordings revealed that increased SK2 expression and impaired T286 phosphorylation of CaMKII coincide with a prolonged interspike interval in the hippocampal cornu ammonis-1 (CA1) field for both 16p11.2del and 129S:Δdisc1 mutant mice. These findings suggest that alteration of small conductance channels and T286 phosphorylation of CaMKII are likely shared factors underlying behavioral changes in these two genetic mouse models.
机译:离子通道门控和N-甲基-D-天冬氨酸受体1活性的激酶调节是控制突触可塑性的基本机制。在这项研究中,我们显示了两个概括人类认知障碍方面的突变模型(16p11.2del和Δdisc1)在N-甲基-D-天冬氨酸受体1依赖性突触功能中具有相似的缺陷。我们的结果表明,在16p11.2del和129S:Δdisc1突变小鼠的海马和前额叶皮层中,小传导钾通道(SK2或KCa2.2)的表达明显上调。同样,两个突变株在海马和前额叶皮层中都显示钙钙调蛋白依赖性激酶II(CaMKII)的T286磷酸化受损。体内神经记录显示,对于16p11.2del和129S:Δdisc1突变小鼠,CaMKII的SK2表达增加和T286磷酸化受损与海马角膜ammonis-1(CA1)场的钉间间隔延长有关。这些发现表明,小电导通道的改变和CaMKII的T286磷酸化可能是这两种遗传小鼠模型中行为变化的潜在共有因素。

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