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首页> 外文期刊>Frontiers in Cellular Neuroscience >Reelin Exerts Structural, Biochemical and Transcriptional Regulation Over Presynaptic and Postsynaptic Elements in the Adult Hippocampus
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Reelin Exerts Structural, Biochemical and Transcriptional Regulation Over Presynaptic and Postsynaptic Elements in the Adult Hippocampus

机译:Reelin对成年海马突触前和突触后元素进行结构,生化和转录调控。

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摘要

Reelin regulates neuronal positioning and synaptogenesis in the developing brain, and adult brain plasticity. Here we used transgenic mice overexpressing Reelin (Reelin-OE mice) to perform a comprehensive dissection of the effects of this protein on the structural and biochemical features of dendritic spines and axon terminals in the adult hippocampus. Electron microscopy (EM) revealed both higher density of synapses and structural complexity of both pre- and postsynaptic elements in transgenic mice than in WT mice. Dendritic spines had larger spine apparatuses, which correlated with a redistribution of Synaptopodin. Most of the changes observed in Reelin-OE mice were reversible after blockade of transgene expression, thus supporting the specificity of the observed phenotypes. Western blot and transcriptional analyses did not show major changes in the expression of pre- or postsynaptic proteins, including SNARE proteins, glutamate receptors, and scaffolding and signaling proteins. However, EM immunogold assays revealed that the NMDA receptor subunits NR2a and NR2b, and p-Cofilin showed a redistribution from synaptic to extrasynaptic pools. Taken together with previous studies, the present results suggest that Reelin regulates the structural and biochemical properties of adult hippocampal synapses by increasing their density and morphological complexity and by modifying the distribution and trafficking of major glutamatergic components.
机译:Reelin调节发育中的大脑的神经元定位和突触形成,以及成人大脑的可塑性。在这里,我们使用过表达Reelin的转基因小鼠(Reelin-OE小鼠)对该蛋白对成年海马体中树突棘和轴突末端的结构和生化特征的影响进行了全面解剖。电子显微镜(EM)显示,与WT小鼠相比,转基因小鼠的突触密度更高,并且突触前和突触后元件的结构复杂性更高。树突棘的脊柱器械较大,这与突触足蛋白的重新分布有关。阻断转基因表达后,在Reelin-OE小鼠中观察到的大多数变化是可逆的,从而支持了观察到的表型的特异性。 Western印迹和转录分析未显示突触前或突触后蛋白(包括SNARE蛋白,谷氨酸受体,支架和信号传导蛋白)的表达发生重大变化。但是,EM免疫金测定表明NMDA受体亚基NR2a和NR2b,以及p-Cofilin表现出从突触池向突触外池的重新分布。结合以前的研究,目前的结果表明,Reelin通过增加其密度和形态复杂性以及通过改变主要谷氨酸能成分的分布和运输来调节成年海马突触的结构和生化特性。

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