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神经管闭合需要中线处依赖于Dishevelled的汇聚延伸。

Neural tube closure requires Dishevelled-dependent convergent extension of the midline.

作者信息

Wallingford John B, Harland Richard M

机构信息

Department of Molecular and Cell Biology, 401 Barker Hall, University of California, Berkeley, CA 94720, USA.

出版信息

Development. 2002 Dec;129(24):5815-25. doi: 10.1242/dev.00123.

Abstract

In Xenopus, Dishevelled (Xdsh) signaling is required for both neural tube closure and neural convergent extension, but the connection between these two morphogenetic processes remains unclear. Indeed normal neurulation requires several different cell polarity decisions, any of which may require Xdsh signaling. In this paper we address two issues: (1) which aspects of normal neurulation require Xdsh function; and (2) what role convergent extension plays in the closure of the neural tube. We show that Xdsh signaling is not required for neural fold elevation, medial movement or fusion. Disruption of Xdsh signaling therefore provides a specific tool for uncoupling convergent extension from other processes of neurulation. Using disruption of Xdsh signaling, we demonstrate that convergent extension is crucial to tube closure. Targeted injection revealed that Xdsh function was required specifically in the midline for normal neural tube closure. We suggest that the inherent movement of the neural folds can accomplish only a finite amount of medial progress and that convergent extension of the midline is necessary to reduce the distance between the nascent neural folds, allowing them to meet and fuse. Similar results with Xenopus strabismus implicate the planar cell polarity (PCP) signaling cascade in neural convergent extension and tube closure. Together, these data demonstrate that PCP-mediated convergent extension movements are crucial to proper vertebrate neurulation.

摘要

在非洲爪蟾中,Dishevelled(Xdsh)信号传导对于神经管闭合和神经会聚延伸都是必需的,但这两个形态发生过程之间的联系仍不清楚。实际上,正常的神经胚形成需要几个不同的细胞极性决定,其中任何一个可能都需要Xdsh信号传导。在本文中,我们探讨两个问题:(1)正常神经胚形成的哪些方面需要Xdsh功能;(2)会聚延伸在神经管闭合中起什么作用。我们发现Xdsh信号传导对于神经褶的抬高、向内侧移动或融合并非必需。因此,Xdsh信号传导的破坏为将会聚延伸与神经胚形成的其他过程解偶联提供了一种特定工具。利用Xdsh信号传导的破坏,我们证明会聚延伸对于神经管闭合至关重要。靶向注射显示,正常神经管闭合特别需要Xdsh功能在中线发挥作用。我们认为神经褶的固有运动只能完成有限的向内侧进展,中线的会聚延伸对于缩短新生神经褶之间的距离是必要的,使它们能够相遇并融合。非洲爪蟾斜视的类似结果表明平面细胞极性(PCP)信号级联参与神经会聚延伸和神经管闭合。总之,这些数据表明PCP介导的会聚延伸运动对于脊椎动物正常的神经胚形成至关重要。

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