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Netrin-1 对于高效的神经管闭合是必需的。

Netrin-1 is required for efficient neural tube closure.

机构信息

Queensland Brain Institute, The University of Queensland, Brisbane, Queensland 4072, Australia.

出版信息

Dev Neurobiol. 2013 Feb;73(2):176-87. doi: 10.1002/dneu.22051. Epub 2012 Sep 27.

Abstract

During neural tube formation, neural plate cells migrate from the lateral aspects of the dorsal surface towards the midline. Elevation of the lateral regions of the neural plate produces the neural folds which then migrate to the midline where they fuse at their dorsal tips, generating a closed neural tube comprising an apicobasally polarized neuroepithelium. Our previous study identified a novel role for the axon guidance receptor neogenin in Xenopus neural tube formation. We demonstrated that loss of neogenin impeded neural fold apposition and neural tube closure. This study also revealed that neogenin, via its interaction with its ligand, RGMa, promoted cell-cell adhesion between neural plate cells as the neural folds elevated and between neuroepithelial cells within the neural tube. The second neogenin ligand, netrin-1, has been implicated in cell migration and epithelial morphogenesis. Therefore, we hypothesized that netrin-1 may also act as a ligand for neogenin during neurulation. Here we demonstrate that morpholino knockdown of Xenopus netrin-1 results in delayed neural fold apposition and neural tube closure. We further show that netrin-1 functions in the same pathway as neogenin and RGMa during neurulation. However, contrary to the role of neogenin-RGMa interactions, neogenin-netrin-1 interactions are not required for neural fold elevation or adhesion between neuroepithelial cells. Instead, our data suggest that netrin-1 contributes to the migration of the neural folds towards the midline. We conclude that both neogenin ligands work synergistically to ensure neural tube closure.

摘要

在神经管形成过程中,神经板细胞从背侧表面的外侧向中线迁移。神经板的外侧区域的升高产生神经褶,然后迁移到中线,在那里它们在背侧尖端融合,生成一个包含顶端到基底极化的神经上皮的封闭神经管。我们之前的研究确定了轴突导向受体 neogenin 在非洲爪蟾神经管形成中的一个新作用。我们证明,neogenin 的缺失阻碍了神经褶的靠拢和神经管的闭合。这项研究还揭示了 neogenin 通过与其配体 RGMa 的相互作用,在神经褶升高时促进神经板细胞之间以及神经管内神经上皮细胞之间的细胞-细胞粘附。第二个 neogenin 配体 netrin-1 已被牵连到细胞迁移和上皮形态发生中。因此,我们假设 netrin-1 也可能在神经胚形成过程中作为 neogenin 的配体发挥作用。在这里,我们证明了 Xenopus netrin-1 的形态发生敲低导致神经褶的靠拢和神经管的闭合延迟。我们进一步表明,netrin-1 在神经胚形成过程中与 neogenin 和 RGMa 处于相同的途径中。然而,与 neogenin-RGMa 相互作用的作用相反,neogenin-netrin-1 相互作用不是神经褶升高或神经上皮细胞之间粘附所必需的。相反,我们的数据表明 netrin-1 有助于神经褶向中线迁移。我们得出结论,两种 neogenin 配体协同作用以确保神经管闭合。

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