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斑马鱼netrin1基因的一个底板增强子需要独眼巨人(Nodal)信号传导和翼状螺旋转录因子FoxA2。

A floor plate enhancer of the zebrafish netrin1 gene requires Cyclops (Nodal) signalling and the winged helix transcription factor FoxA2.

作者信息

Rastegar Sepand, Albert Stephanie, Le Roux Isabelle, Fischer Nadine, Blader Patrick, Müller Ferenc, Strähle Uwe

机构信息

Institut de Génétique et de Biologie Moléculaire et Cellulaire, CNRS/INSERM/ULP, B.P. 10142, 67404, Illkirch Cedex, C.U. de Strasbourg, France.

出版信息

Dev Biol. 2002 Dec 1;252(1):1-14. doi: 10.1006/dbio.2002.0837.

Abstract

The floor plate is an organising centre that controls neural differentiation and axonogenesis in the neural tube. The axon guidance molecule Netrin1 is expressed in the floor plate of zebrafish embryos. To elucidate the regulatory mechanisms underlying expression in the floor plate, we scanned the netrin1 locus for regulatory regions and identified an enhancer that drives expression in the floor plate and hypochord of transgenic embryos. The expression of the transgene is ectopically activated by Cyclops (Nodal) signals but does not respond to Hedgehog signals. The winged-helix transcription factor foxA2 (also HNF3beta, axial) is expressed in the notochord and floor plate. We show that knock-down of FoxA2 leads to loss of floor plate, while notochord and hypochord development is unaffected, suggesting a specific requirement of FoxA2 in the floor plate. The transgene is ectopically activated by FoxA2, and expression of FoxA2 leads to rescue of floor plate differentiation in mutant embryos that are deficient in Cyclops signalling. Zebrafish and mouse use different signalling systems to specify floor plate. The zebrafish netrin1 regulatory region also drives expression in the floor plate of mouse and chicken embryos. This suggests that components of the regulatory circuits controlling expression in the floor plate are conserved and that FoxA2-given its importance for midline development also in the mouse-may be one such component.

摘要

底板是一个调控中心,控制神经管中的神经分化和轴突发生。轴突导向分子Netrin1在斑马鱼胚胎的底板中表达。为了阐明底板中表达的调控机制,我们扫描了netrin1基因座以寻找调控区域,并鉴定出一个增强子,该增强子驱动转基因胚胎底板和脊索中的表达。转基因的表达被独眼巨人(Nodal)信号异位激活,但对刺猬信号不响应。有翼螺旋转录因子foxA2(也称为HNF3β、轴向)在脊索和底板中表达。我们发现敲低FoxA2会导致底板缺失,而脊索和脊索发育不受影响,这表明FoxA2在底板中有特定需求。转基因被FoxA2异位激活,并且FoxA2的表达导致独眼巨人信号缺陷的突变胚胎中底板分化的挽救。斑马鱼和小鼠使用不同的信号系统来确定底板。斑马鱼netrin1调控区域也驱动小鼠和鸡胚胎底板中的表达。这表明控制底板中表达的调控回路的组成部分是保守的,并且鉴于FoxA2对小鼠中线发育也很重要,它可能是这样一个组成部分。

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