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发育中的齿状回中瞬时软膜下神经源性区域的鉴定及其受Cxcl12和Reelin信号通路的调控

Identification of a transient subpial neurogenic zone in the developing dentate gyrus and its regulation by Cxcl12 and reelin signaling.

作者信息

Li Guangnan, Kataoka Hiroshi, Coughlin Shaun R, Pleasure Samuel J

机构信息

Department of Neurology, UCSF School of Medicine, San Francisco, CA 94158, USA.

出版信息

Development. 2009 Jan;136(2):327-35. doi: 10.1242/dev.025742.

Abstract

One striking feature of dentate gyrus development, distinct from the other cortical structures, is the relocation of neural precursors from the ventricular zone to the forming dentate pole to produce a lifelong neurogenic subgranular zone (SGZ). In this study, we demonstrate that dentate progenitors first dwell for up to 1 week in a previously unrecognized neurogenic zone intimately associated with the pial meningeal surface lining the outer edge of the forming dentate. This zone also serves as the organizational matrix for the initial formation of the dentate glial scaffolding. Timely clearance of neural precursors from their transient location depends on reelin, whereas initial formation of this transient stem cell niche requires Cxcl12-Cxcr4 signaling. The final settlement of the neural precursors at the subgranular zone relies on a pertussis toxin-sensitive pathway independent of Cxcl12-Cxcr4 signaling. Furthermore, genetic fate-mapping analysis suggests that subpial precursors contribute to the SGZ formation. These results demonstrate that the relocation of neural precursors in the dentate gyrus consists of discrete steps regulated by multiple pathways.

摘要

齿状回发育的一个显著特征,与其他皮质结构不同,是神经前体细胞从脑室区迁移至正在形成的齿状极,以产生终身存在的神经发生性颗粒下区(SGZ)。在本研究中,我们证明齿状前体细胞最初在一个先前未被识别的与覆盖正在形成的齿状外缘的软脑膜表面紧密相关的神经发生区停留长达1周。该区域还作为齿状胶质支架初始形成的组织基质。神经前体细胞从其短暂位置的及时清除取决于Reelin,而这个短暂干细胞龛的初始形成需要Cxcl12 - Cxcr4信号传导。神经前体细胞在颗粒下区的最终定居依赖于一条独立于Cxcl12 - Cxcr4信号传导的对百日咳毒素敏感的途径。此外,基因命运图谱分析表明软膜下前体细胞对SGZ的形成有贡献。这些结果表明齿状回中神经前体细胞的迁移由多个途径调控的离散步骤组成。

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