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首页> 外文期刊>The Journal of Comparative Neurology >Drebrin a knockout eliminates the rapid form of homeostatic synaptic plasticity at excitatory synapses of intact adult cerebral cortex.
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Drebrin a knockout eliminates the rapid form of homeostatic synaptic plasticity at excitatory synapses of intact adult cerebral cortex.

机译:Drebrin基因敲除消除了完整成人大脑皮层在兴奋性突触中快速形式的稳态突触可塑性。

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Homeostatic synaptic plasticity (HSP) is important for maintaining neurons' excitability within the dynamic range and for protecting neurons from unconstrained long-term potentiation that can cause breakdown of synapse specificity (Turrigiano [2008] Cell 135:422-435). Knowledge of the molecular mechanism underlying this phenomenon remains incomplete, especially for the rapid form of HSP. To test whether HSP in adulthood depends on an F-actin binding protein, drebrin A, mice deleted of the adult isoform of drebrin (DAKO) but retaining the embryonic isoform (drebrin E) were generated. HSP was assayed by determining whether the NR2A subunit of N-methyl-D-aspartate receptors (NMDARs) can rise rapidly within spines following the application of an NMDAR antagonist, D-APV, onto the cortical surface. Electron microscopic immunocytochemistry revealed that, as expected, the D-APV treatment of wild-type (WT) mouse cortex increased the proportion of NR2A-immunolabeled spines within 30 minutes relative to basal levels in hemispheres treated with an inactive enantiomer, L-APV. This difference was significant at the postsynaptic membrane and postsynaptic density (i.e., synaptic junction) as well as at nonsynaptic sites within spines and was not accompanied by spine size changes. In contrast, the D-APV treatment of DAKO brains did not augment NR2A labeling within the spine cytoplasm or at the synaptic junction, even though basal levels of NR2A were not significantly different from those of WT cortices. These findings indicate that drebrin A is required for the rapid (<30 minutes) form of HSP at excitatory synapses of adult cortices, whereas drebrin E is sufficient for maintaining basal NR2A levels within spines.
机译:稳态突触可塑性(HSP)对于将神经元的兴奋性维持在动态范围内,以及保护神经元不受可能引起突触特异性破坏的长期增强作用很重要(Turrigiano [2008] Cell 135:422-435)。尚不完全了解这种现象背后的分子机制,特别是对于快速形式的HSP。为了测试成年期的HSP是否依赖于F-肌动蛋白结合蛋白drebrin A,产生了缺失了drebrin成年亚型(DAKO)但保留了胚胎亚型(drebrin E)的小鼠。通过确定在将NMDAR拮抗剂D-APV应用于皮质表面后,N-甲基-D-天冬氨酸受体(NMDARs)的NR2A亚基是否可以在棘突中快速升高来测定HSP。电子显微镜免疫细胞化学显示,正如预期的那样,相对于用无活性对映体L-APV处理的半球的基础水平,D-APV处理野生型(WT)小鼠皮层在30分钟内增加了NR2A免疫标记的棘的比例。该差异在突触后膜和突触后密度(即,突触连接)以及棘突内的非突触部位处是显着的,并且不伴随脊柱尺寸变化。相反,即使NR2A的基础水平与WT皮质的基础水平没有显着差异,DAKO脑的D-APV治疗也不会增加SN2A在脊柱细胞质内或突触连接处的标记。这些发现表明,在成年皮质的兴奋性突触中,HSP的快速(<30分钟)形式需要drebrin A,而drebrin E足以维持棘突内基础NR2A的水平。

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