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α钙调蛋白依赖性蛋白激酶II在小鼠体感皮层学习依赖性可塑性中的作用

Alpha calcium/calmodulin dependent protein kinase II in learning-dependent plasticity of mouse somatosensory cortex.

作者信息

Skibinska-Kijek A, Radwanska A, Kossut M

机构信息

Laboratory of Neuroplasticity, Department of Molecular and Cellular Neurobiology, Nencki Institute, Polish Academy of Sciences, 3 Pasteur Street, 02-093 Warsaw, Poland.

出版信息

Neuroscience. 2008 Feb 6;151(3):750-7. doi: 10.1016/j.neuroscience.2007.11.012. Epub 2007 Nov 19.

DOI:10.1016/j.neuroscience.2007.11.012
PMID:18164137
Abstract

Calcium/calmodulin dependent protein kinase II (CaMKII), and more specifically its alpha subunit, is widely believed to be fundamental for hippocampal synaptic plasticity. In the cerebral cortex, deprivation-evoked plasticity was shown to depend on alphaCaMKII autophosphorylation abilities. Here we analyzed how learning-induced functional reorganization of cortical representations affected alphaCaMKII in adult Swiss mice. Mice were subjected to short-lasting sensory training in which stimulation of whiskers was paired with tail shock. The pairing results in enlargement of functional representation of vibrissae activated during the training. alphaCaMKII protein and its autophosphorylation level were determined by Western-blotting in somatosensory cortex crude synaptosomal fraction (P2) and postsynaptic protein-enriched, Triton X-100 insoluble fraction (TIF). The first training session resulted in an increase in alphaCaMKII autophosphorylation at autonomy site observed in TIF. A similar increase was also observed after the first session of just whiskers stimulation, which alone does not induce rearrangement of cortical representations. These data indicate that increased autophosphorylation of postsynaptic alphaCaMKII is not a correlate of induction phase of plasticity related reorganization of cortical representation of vibrissae. The increase observed in both experimental groups was transient and did not persist in the maintenance phase of the plastic change. Furthermore, we found that the training caused a delayed upregulation of alphaCaMKII protein level in crude synaptosomal fraction, but not in TIF, and the upregulation was not accompanied by an increase in autophosphorylation level of the kinase. The result indicates alphaCaMKII involvement in the late phase of plastic change and suggests the participation of a presynaptic pool of kinase rather than postsynaptic at this point.

摘要

钙/钙调蛋白依赖性蛋白激酶II(CaMKII),更具体地说是其α亚基,被广泛认为是海马突触可塑性的基础。在大脑皮层中,剥夺诱发的可塑性被证明依赖于αCaMKII的自身磷酸化能力。在这里,我们分析了学习诱导的皮层表征功能重组如何影响成年瑞士小鼠的αCaMKII。对小鼠进行短期感觉训练,其中触须刺激与尾部电击配对。这种配对导致训练期间激活的触须功能表征扩大。通过蛋白质免疫印迹法在体感皮层粗突触体组分(P2)和富含突触后蛋白的Triton X-100不溶性组分(TIF)中测定αCaMKII蛋白及其自身磷酸化水平。第一次训练导致在TIF中观察到的自主位点αCaMKII自身磷酸化增加。在仅进行触须刺激的第一阶段后也观察到类似的增加,而仅触须刺激本身不会诱导皮层表征的重新排列。这些数据表明,突触后αCaMKII自身磷酸化增加与触须皮层表征可塑性相关重组的诱导阶段无关。在两个实验组中观察到的增加都是短暂的,并且在可塑性变化的维持阶段没有持续。此外,我们发现训练导致粗突触体组分中αCaMKII蛋白水平延迟上调,但在TIF中没有,并且上调不伴随着激酶自身磷酸化水平的增加。结果表明αCaMKII参与可塑性变化的后期阶段,并表明此时激酶的突触前池而非突触后池参与其中。

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