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小分子 GTP 酶 RhoA 对于维持脊髓神经上皮组织和神经干细胞库是必需的。

The small GTPase RhoA is required to maintain spinal cord neuroepithelium organization and the neural stem cell pool.

机构信息

Institute of Cell Biology, Department of Biology, Eidgenössische Technische Hochschule Zürich, CH-8093 Zürich, Switzerland.

出版信息

J Neurosci. 2011 Mar 30;31(13):5120-30. doi: 10.1523/JNEUROSCI.4807-10.2011.

Abstract

The regulation of adherens junctions (AJs) is critical for multiple events during CNS development, including the formation and maintenance of the neuroepithelium. We have addressed the role of the small GTPase RhoA in the developing mouse nervous system using tissue-specific conditional gene ablation. We show that, in the spinal cord neuroepithelium, RhoA is essential to localize N-cadherin and β-catenin to AJs and maintain apical-basal polarity of neural progenitor cells. Ablation of RhoA caused the loss of AJs and severe abnormalities in the organization of cells within the neuroepithelium, including decreased neuroepithelial cell proliferation and premature cell-cycle exit, reduction of the neural stem cell pool size, and the infiltration of neuroepithelial cells into the lumen of the ventricle. We also show that, in the absence of RhoA, its effector, mammalian diaphanous-related formin1 (mDia1), does not localize to apical AJs in which it likely stabilizes intracellular adhesion by promoting local actin polymerization and microtubule organization. Furthermore, expressing a dominant-negative form of mDia1 in neural stem/progenitor cells results in a similar phenotype compared with that of the RhoA conditional knock-out, namely the loss of AJs and apical polarity. Together, our data show that RhoA signaling is necessary for AJ regulation and for the maintenance of mammalian neuroepithelium organization preventing precocious cell-cycle exit and differentiation.

摘要

黏着连接(AJs)的调节对于中枢神经系统(CNS)发育过程中的多个事件至关重要,包括神经上皮的形成和维持。我们使用组织特异性条件性基因敲除来研究小 GTPase RhoA 在发育中的小鼠神经系统中的作用。我们发现,在脊髓神经上皮中,RhoA 对于将 N-钙黏蛋白和β-连环蛋白定位到 AJ 并维持神经祖细胞的顶底极性是必需的。RhoA 的缺失导致 AJ 的丢失和神经上皮内细胞的组织严重异常,包括神经上皮细胞增殖减少和过早的细胞周期退出、神经干细胞池大小减少以及神经上皮细胞渗透到脑室管腔中。我们还表明,在没有 RhoA 的情况下,其效应物,哺乳动物裂隙相关formin1(mDia1),不会定位于其中可能通过促进局部肌动蛋白聚合和微管组织来稳定细胞内黏附的顶端 AJ。此外,在神经干细胞/祖细胞中表达显性负形式的 mDia1 会导致与 RhoA 条件性敲除相似的表型,即 AJ 的丢失和顶端极性。总之,我们的数据表明 RhoA 信号对于 AJ 的调节和哺乳动物神经上皮组织的维持是必需的,可防止过早的细胞周期退出和分化。

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