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原肠胚形成过程中前神经外胚层逐步被诱导:非洲爪蟾同源异型盒基因正齿的作用。

Anterior neurectoderm is progressively induced during gastrulation: the role of the Xenopus homeobox gene orthodenticle.

作者信息

Blitz I L, Cho K W

机构信息

Department of Developmental and Cell Biology, University of California, Irvine 92717-2300, USA.

出版信息

Development. 1995 Apr;121(4):993-1004. doi: 10.1242/dev.121.4.993.

Abstract

In order to study the regional specification of neural tissue we isolated Xotx2, a Xenopus homolog of the Drosophila orthodenticle gene. Xotx2 is initially expressed in Spemann's organizer and its expression is absent in the ectoderm of early gastrulae. As gastrulation proceeds, Xotx2 expression is induced in the overlying ectoderm and this domain of expression moves anteriorly in register with underlying anterior mesoderm throughout the remainder of gastrulation. The expression pattern of Xotx2 suggests that a wave of Xotx2 expression (marking anterior neurectoderm) travels through the ectoderm of the gastrula with the movement of underlying anterior (prechordal plate) mesoderm. This expression of Xotx2 is reminiscent of the Eyal-Giladi model for neural induction. According to this model, anterior neural-inducing signals emanating from underlying anterior mesoderm transiently induce anterior neural tissues after vertical contact with the overlying ectoderm. Further patterning is achieved when the ectoderm receives caudalizing signals as it comes in contact with more posterior mesoderm during subsequent gastrulation movements. Functional characterization of the Xotx2 protein has revealed its involvement in differentiation of the anterior-most tissue, the cement gland. Ectopic expression of Xotx2 in embryos induces extra cement glands in the skin as well as inducing a cement gland marker (XAG1) in isolated animal cap ectoderm. Microinjection of RNA encoding the organizer-specific homeo-domain protein goosecoid into the ventral marginal zone results in induction of the Xotx2 gene. This result, taken in combination with the indistinguishable expression patterns of Xotx2 and goosecoid in the anterior mesoderm suggests that Xotx2 is a target of goosecoid regulation.

摘要

为了研究神经组织的区域特化,我们分离出了Xotx2,它是果蝇orthodenticle基因在非洲爪蟾中的同源物。Xotx2最初在施佩曼组织者中表达,而在早期原肠胚的外胚层中不表达。随着原肠胚形成的进行,Xotx2在外胚层的上层被诱导表达,并且这个表达区域在整个原肠胚形成的剩余过程中与下方的前中胚层同步向前移动。Xotx2的表达模式表明,一波Xotx2表达(标记前神经外胚层)随着下方前(脊索前板)中胚层的移动穿过原肠胚的外胚层。Xotx2的这种表达让人想起埃亚尔 - 吉拉迪的神经诱导模型。根据这个模型,来自下方前中胚层的前神经诱导信号在与上方外胚层垂直接触后短暂诱导前神经组织。当外胚层在随后的原肠胚形成运动中与更靠后的中胚层接触时接收到尾化信号,进一步的模式形成就得以实现。Xotx2蛋白的功能特性揭示了它参与最前端组织——黏腺的分化。Xotx2在胚胎中的异位表达会在皮肤中诱导出额外的黏腺,并且在分离的动物帽外胚层中诱导黏腺标记物(XAG1)。将编码组织者特异性同源结构域蛋白鹅膏蕈氨酸的RNA显微注射到腹侧边缘区会导致Xotx2基因的诱导。这个结果,结合Xotx2和鹅膏蕈氨酸在前中胚层中难以区分的表达模式,表明Xotx2是鹅膏蕈氨酸调控的一个靶点。

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