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神经管形态发生过程中的上皮融合。

Epithelial fusion during neural tube morphogenesis.

作者信息

Pai Yun-Jin, Abdullah N L, Mohd-Zin S W, Mohammed R S, Rolo Ana, Greene Nicholas D E, Abdul-Aziz Noraishah M, Copp Andrew J

机构信息

Department of Parasitology, Faculty of Medicine, University of Malaya, Kuala Lumpur, Malaysia.

出版信息

Birth Defects Res A Clin Mol Teratol. 2012 Oct;94(10):817-23. doi: 10.1002/bdra.23072. Epub 2012 Sep 3.

Abstract

Adhesion and fusion of epithelial sheets marks the completion of many morphogenetic events during embryogenesis. Neural tube closure involves an epithelial fusion sequence in which the apposing neural folds adhere initially via cellular protrusions, proceed to a more stable union, and subsequently undergo remodeling of the epithelial structures to yield a separate neural tube roof plate and overlying nonneural ectoderm. Cellular protrusions comprise lamellipodia and filopodia, and studies in several different systems emphasize the critical role of RhoGTPases in their regulation. How epithelia establish initial adhesion is poorly understood but, in neurulation, may involve interactions between EphA receptors and their ephrinA ligands. Epithelial remodeling is spatially and temporally correlated with apoptosis in the dorsal neural tube midline, but experimental inhibition of this cell death does not prevent fusion and remodeling. A variety of molecular signaling systems have been implicated in the late events of morphogenesis, but genetic redundancy, for example among the integrins and laminins, makes identification of the critical players challenging. An improved understanding of epithelial fusion can provide insights into normal developmental processes and may also indicate the mode of origin of clinically important birth defects.

摘要

上皮细胞层的黏附与融合标志着胚胎发育过程中许多形态发生事件的完成。神经管闭合涉及上皮融合序列,其中相对的神经褶最初通过细胞突起黏附,进而形成更稳定的结合,随后上皮结构进行重塑,产生独立的神经管顶板和覆盖其上的非神经外胚层。细胞突起包括片状伪足和丝状伪足,对几种不同系统的研究强调了RhoGTPases在其调控中的关键作用。上皮细胞如何建立初始黏附尚不清楚,但在神经胚形成过程中,可能涉及EphA受体与其ephrinA配体之间的相互作用。上皮重塑在空间和时间上与背侧神经管中线的细胞凋亡相关,但实验性抑制这种细胞死亡并不能阻止融合和重塑。多种分子信号系统与形态发生的后期事件有关,但例如整合素和层粘连蛋白之间的基因冗余使得确定关键参与者具有挑战性。对上皮融合的深入理解可以为正常发育过程提供见解,也可能指出临床上重要出生缺陷的起源方式。

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