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Wnt和FGF信号通路协同调控非洲爪蟾前后神经外胚层的模式形成。

Wnt and FGF pathways cooperatively pattern anteroposterior neural ectoderm in Xenopus.

作者信息

McGrew L L, Hoppler S, Moon R T

机构信息

Howard Hughes Medical Institute and Department of Pharmacology, University of Washington School of Medicine, Seattle 98195, USA.

出版信息

Mech Dev. 1997 Dec;69(1-2):105-14. doi: 10.1016/s0925-4773(97)00160-3.

Abstract

Previous gain-of-function assays in Xenopus have demonstrated that Xwnt-3a can pattern neural tissue by reducing the expression of anterior neural genes, and elevating the expression of posterior neural genes. To date, no loss-of-function studies have been conducted in Xenopus to show a requirement of endogenous Wnt signaling for patterning of the neural ectoderm along the anteroposterior axis. We report that expression of a dominant negative Wnt in Xenopus embryos causes a reduction in the expression of posterior neural genes, and an elevation in the expression of anterior neural genes, thereby confirming the involvement of endogenous Wnt signaling in patterning the neural axis. We further demonstrate that the ability of Xwnt-3a to decrease expression of anterior neural genes in noggin-treated explants is dependent upon a functional FGF signaling pathway, while the elevation of expression of posterior neural genes does not require FGF signaling. The previously reported ability of FGF to elevate the expression of posterior neural genes in noggin-treated explants was found to be dependent on endogenous Wnt signaling. We conclude that neural induction occurs initially in a Wnt-independent manner, but that generation of complete anteroposterior neural pattern requires the cooperative actions of Wnt and FGF pathways.

摘要

此前在非洲爪蟾中进行的功能获得性试验表明,Xwnt-3a可通过降低前侧神经基因的表达并提高后侧神经基因的表达来调控神经组织的模式。迄今为止,尚未在非洲爪蟾中进行功能丧失性研究以证明内源性Wnt信号对于沿前后轴形成神经外胚层模式是必需的。我们报告称,在非洲爪蟾胚胎中表达显性负性Wnt会导致后侧神经基因的表达减少,前侧神经基因的表达增加,从而证实内源性Wnt信号参与了神经轴模式的形成。我们进一步证明,Xwnt-3a在经头蛋白处理的外植体中降低前侧神经基因表达的能力依赖于功能性FGF信号通路,但后侧神经基因表达的增加并不需要FGF信号。研究发现,此前报道的FGF在经头蛋白处理的外植体中提高后侧神经基因表达的能力依赖于内源性Wnt信号。我们得出结论,神经诱导最初以不依赖Wnt的方式发生,但完整的前后神经模式的形成需要Wnt和FGF信号通路的协同作用。

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