首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Septin 11 Is Present in GABAergic Synapses and Plays a Functional Role in the Cytoarchitecture of Neurons and GABAergic Synaptic Connectivity
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Septin 11 Is Present in GABAergic Synapses and Plays a Functional Role in the Cytoarchitecture of Neurons and GABAergic Synaptic Connectivity

机译:Septin 11存在于GABA能突触中并在神经元的细胞结构和GABA能突触连通性中发挥功能性作用

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摘要

Mass spectrometry and immunoblot analysis of a rat brain fraction enriched in type-II postsynaptic densities and postsynaptic GABAergic markers showed enrichment in the protein septin 11. Septin 11 is expressed throughout the brain, being particularly high in the spiny branchlets of the Purkinje cells in the molecular layer of cerebellum and in the olfactory bulb. Immunofluorescence of cultured hippocampal neurons showed that 54 ± 4% of the GABAergic synapses and 25 ± 2% of the glutamatergic synapses had colocalizing septin 11 clusters. Similar colocalization numbers were found in the molecular layer of cerebellar sections. In cultured hippocampal neurons, septin 11 clusters were frequently present at the base of dendritic protrusions and at the bifurcation points of the dendritic branches. Electron microscopy immunocytochemistry of the rat brain cerebellum revealed the accumulation of septin 11 at the neck of dendritic spines, at the bifurcation of dendritic branches, and at some GABAergic synapses. Knocking down septin 11 in cultured hippocampal neurons with septin 11 small hairpin RNAs showed (i) reduced dendritic arborization; (ii) decreased density and increased length of dendritic protrusions; and (iii) decreased GABAergic synaptic contacts that these neurons receive. The results indicate that septin 11 plays important roles in the cytoarchitecture of neurons, including dendritic arborization and dendritic spines, and that septin 11 also plays a role in GABAergic synaptic connectivity.
机译:富含II型突触后密度和突触后GABA能量标记的大鼠大脑部分的质谱和免疫印迹分析表明,蛋白septin 11富集。Septin11在整个大脑中均有表达,在浦肯野细胞的多刺小分支中特别高。小脑和嗅球的分子层。培养的海马神经元的免疫荧光显示,54±4%的GABA能突触和25±2%的谷氨酸能突触具有共定位的septin 11簇。在小脑切片的分子层中发现了相似的共定位数。在培养的海马神经元中,septin 11簇经常出现在树突突起的底部和树突分支的分叉点。大鼠脑小脑的电子显微镜免疫细胞化学分析显示,septin 11在树突棘的颈部,树突分支的分叉处和某些GABA能突触中积累。用Septin 11小发夹RNA敲除培养的海马神经元中的septin 11,显示(i)树突状树突减少; (ii)降低密度并增加树突突起的长度; (iii)这些神经元接受的GABA能突触接触减少。结果表明,septin 11在神经元的细胞结构中起重要作用,包括树突状树突化和树突棘,并且septin 11在GABA能突触连通性中也起重要作用。

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