首页> 外文期刊>The Journal of Comparative Neurology >Lamina-specific distribution of Synaptopodin, an actin-associated molecule essential for the spine apparatus, in identified principal cell dendrites of the mouse hippocampus.
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Lamina-specific distribution of Synaptopodin, an actin-associated molecule essential for the spine apparatus, in identified principal cell dendrites of the mouse hippocampus.

机译:在小鼠海马的主要细胞树突中,突触足蛋白的椎板特异性分布,突触足蛋白是脊柱装置必不可少的肌动蛋白相关分子。

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Synaptopodin is an actin-associated molecule found in a subset of telencephalic spines. It is an essential component of the spine apparatus, a Ca(2+)-storing organelle and has been implicated in synaptic plasticity (Deller et al. [2003] Proc Natl Acad Sci U S A 100:10494-10499). In the rodent hippocampus, Synaptopodin is distributed in a characteristic region- and lamina-specific manner. To learn more about the cellular basis underlying this distribution, the regional, laminar, and cellular localization of Synaptopodin and its mRNA were analyzed in mouse hippocampus. First, Synaptopodin puncta densities were quantified after immunofluorescent labeling using confocal microscopy. Second, the dendritic distribution of Synaptopodin-positive puncta was studied using three-dimensional confocal reconstructions of Synaptopodin-immunostained and enhanced green fluorescence protein (EGFP)-labeled principal neurons. Synaptopodin puncta located within dendrites of principal neurons were primarily found in spines (>95%). Analysis of dendritic segments located in different layers revealed lamina-specific differences in the percentage of Synaptopodin-positive spines. Densities ranged between 37% (outer molecular layer) and 14% (stratum oriens; CA1). Finally, synaptopodin mRNA expression was studied using in situ hybridization, laser microdissection, and quantitative reverse transcriptase-polymerase chain reaction. Expression levels were comparable between all regions. These data demonstrate a lamina-specific distribution of Synaptopodin within dendritic segments of identified neurons. Within dendrites, the majority of Synaptopodin-positive puncta were located in spines where they represent spine apparatuses. We conclude, that this organelle is distributed in a region- and layer-specific manner in the mouse hippocampus and suggest that differences in the activity of afferent fiber systems could determine its distribution.
机译:突触足蛋白是在端脑棘的子集中发现的肌动蛋白相关分子。它是脊柱设备的重要组成部分,是储存Ca(2+)的细胞器,并且与突触可塑性有关(Deller et al。[2003] Proc Natl Acad Sci U S A 100:10494-10499)。在啮齿类动物海马中,突触足蛋白以特征性的区域和层特异性方式分布。若要了解有关这种分布基础的细胞基础的更多信息,在小鼠海马体中分析了Synaptopodin及其mRNA的区域,层状和细胞定位。首先,使用共聚焦显微镜对免疫突触标记后的突触足突点密度进行定量。第二,使用Synaptopodin免疫染色和增强的绿色荧光蛋白(EGFP)标记的主要神经元的三维共聚焦重建,研究Synaptopodin阳性小点的树突分布。位于主要神经元树突内的突触足突点主要在棘突中发现(> 95%)。对位于不同层中的树突节的分析显示出突触足蛋白阳性棘突百分率的叶片特异性差异。密度介于37%(外层分子)和14%(原始层; CA1)之间。最后,使用原位杂交,激光显微切割和定量逆转录聚合酶链反应研究了突触足蛋白的mRNA表达。表达水平在所有区域之间是可比的。这些数据证明了突触足蛋白在已识别神经元的树突部分内的层特异性分布。在树突中,大多数突触足蛋白阳性小点位于棘突中,它们代表脊柱装置。我们得出的结论是,该细胞器在小鼠海马体中以区域和层特定的方式分布,并暗示传入纤维系统活动的差异可以决定其分布。

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