Bejar Rafael, Yasuda Rie, Krugers Harmen, Hood Kristin, Mayford Mark
Neurosciences Graduate Program, University of California at San Diego, La Jolla, California 92093, USA.
J Neurosci. 2002 Jul 1;22(13):5719-26. doi: 10.1523/JNEUROSCI.22-13-05719.2002.
Genetic disruption of calmodulin-dependent protein kinase II (CaMKII) function alters hippocampal synaptic plasticity and memory in mice. We used transgenic mice carrying a tetracycline-regulated, calcium-independent form of CaMKII (CaMKII-Asp286) to investigate the role of CaMKII activation on synaptic plasticity and behavior. Mice expressing low levels of a CaMKII-Asp286 transgene have facilitated low-frequency (5 Hz)-induced long-term potentiation (LTP), whereas mice with high levels of transgene expression have a deficit in this form of plasticity. Behavioral impairments on fear-conditioned memory and visible water maze correlate with the level of CaMKII-Asp286 expression. Mice with high levels of CaMKII-Asp286 have reversible, compensatory changes in the expression of genes associated with inhibitory neurotransmission. These results demonstrate that in the hippocampus, CaMKII activation facilitates the induction of low-frequency LTP, but at high levels of expression, compensatory mechanisms act to inhibit the induction of this form of LTP. The most severe behavioral impairments are associated with activation of this compensatory mechanism.
钙调蛋白依赖性蛋白激酶II(CaMKII)功能的基因破坏会改变小鼠海马体的突触可塑性和记忆。我们使用携带四环素调控的、不依赖钙的CaMKII形式(CaMKII-Asp286)的转基因小鼠,来研究CaMKII激活对突触可塑性和行为的作用。表达低水平CaMKII-Asp286转基因的小鼠促进了低频(5赫兹)诱导的长时程增强(LTP),而转基因表达水平高的小鼠在这种可塑性形式上存在缺陷。恐惧条件记忆和可视水迷宫中的行为障碍与CaMKII-Asp286的表达水平相关。CaMKII-Asp286水平高的小鼠在与抑制性神经传递相关的基因表达上有可逆的补偿性变化。这些结果表明,在海马体中,CaMKII激活促进低频LTP的诱导,但在高表达水平时,补偿机制会抑制这种形式的LTP的诱导。最严重的行为障碍与这种补偿机制的激活有关。