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生长中的嗅觉轴突含有Reelin受体VLDLR,并在富含Reelin的筛状间充质中导航。

Outgrowing olfactory axons contain the Reelin receptor VLDLR and navigate through the Reelin-rich cribriform mesenchyme.

作者信息

Schnaufer Carina, Breer Heinz, Fleischer Joerg

机构信息

Institute of Physiology, University of Hohenheim, Stuttgart, Germany.

出版信息

Cell Tissue Res. 2009 Sep;337(3):393-406. doi: 10.1007/s00441-009-0762-5. Epub 2009 Jul 2.

Abstract

Chemosensory neurons in the olfactory epithelium (OE) project axonal processes to the olfactory bulb (OB) of the brain. During embryonic stages, on their trajectory to the OB, the outgrowing axons traverse the so-called cribriform mesenchyme, which is located between the OE and the OB. The molecular cues guiding these axons through the cribriform mesenchyme are largely unknown. To identify molecules influencing the axonal trajectory in the murine cribriform mesenchyme, we performed microarray analyses focusing on extracellular matrix (ECM) proteins present in this tissue. Thereby, the ECM protein Reelin turned out to be an interesting candidate. Reelin was found to be expressed by numerous cells in the cribriform mesenchyme during the embryonic stages when the first axons navigate from the OE to the OB. These cells were closely associated with olfactory axons and apparently lack glial and neuronal markers. In the mesenchyme underlying the OE, localization of the Reelin protein was not confined to the Reelin-expressing cells, but it was also observed to be widely distributed in the ECM-most prominently in regions traversed by olfactory axons. Importantly, these axons were found to be endowed with the Reelin receptor very-low-density lipoprotein receptor (VLDLR). Finally, Reelin expression was also detectable in neuronal cells of the OB, which are contacted by VLDLR-positive olfactory axons. In summary, the results of the present study suggest that a Reelin/VLDLR signaling pathway might contribute to the formation of olfactory projections to the OB and the establishment of initial contacts between the incoming axons and neurons in the OB.

摘要

嗅觉上皮(OE)中的化学感应神经元将轴突投射到脑的嗅球(OB)。在胚胎发育阶段,轴突在向OB生长的轨迹中,会穿过位于OE和OB之间的所谓筛状间充质。引导这些轴突穿过筛状间充质的分子线索在很大程度上尚不清楚。为了确定影响小鼠筛状间充质中轴突轨迹的分子,我们进行了微阵列分析,重点关注该组织中存在的细胞外基质(ECM)蛋白。结果发现,ECM蛋白Reelin是一个有趣的候选分子。在胚胎期,当第一批轴突从OE向OB导航时,发现筛状间充质中的许多细胞表达Reelin。这些细胞与嗅觉轴突紧密相关,且明显缺乏神经胶质和神经元标记物。在OE下方的间充质中,Reelin蛋白的定位不仅局限于表达Reelin的细胞,还在ECM中广泛分布——最显著的是在嗅觉轴突穿过的区域。重要的是,发现这些轴突具有Reelin受体极低密度脂蛋白受体(VLDLR)。最后,在OB的神经元细胞中也可检测到Reelin表达,这些神经元细胞与VLDLR阳性的嗅觉轴突相接触。总之,本研究结果表明,Reelin/VLDLR信号通路可能有助于形成向OB的嗅觉投射以及在传入轴突与OB中的神经元之间建立初始联系。

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