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一种在刺胞动物半侧海葵(Clytia hemisphaerica)的轴向模式形成中所需的母源定位Wnt配体。

A maternally localised Wnt ligand required for axial patterning in the cnidarian Clytia hemisphaerica.

作者信息

Momose Tsuyoshi, Derelle Romain, Houliston Evelyn

机构信息

UMR7009 Laboratory of Developmental Biology, CNRS and Université Pierre et Marie Curie (Paris 6), Observatoire Océanologique, Villefranche-sur-mer, France.

出版信息

Development. 2008 Jun;135(12):2105-13. doi: 10.1242/dev.021543. Epub 2008 May 14.

Abstract

Regionalised activation of canonical Wnt signalling via beta-catenin stabilisation is a key early step in embryonic patterning in many metazoans, including the basally diverging cnidarians, but the upstream maternal cues appear surprisingly variable. In Clytia, regionalised beta-catenin stabilisation defining a presumptive 'oral' territory is determined by two maternally coded Frizzled family Wnt receptors of opposite localisation and function. We have identified a maternally coded ligand, CheWnt3, the RNA of which is localised to the animal cortex (future oral side) of the egg. Antisense morpholino oligonucleotide experiments showed that CheWnt3 is required maternally for regionalised oral beta-catenin stabilisation in the early embryo, being only the second clear example of a maternally required Wnt ligand after Xenopus Xwnt11. In line with the determinant role of the maternally localised Frizzleds, CheWnt3 overexpression by RNA injection initially had little effect on establishing the oral domain. Subsequently, however, overexpression had dramatic consequences for axis development, causing progressive expansion of beta-catenin stabilisation to yield spherical 'oralised' larvae. Upregulation of both CheFz1 and CheFz3 RNAs in CheWnt3 morpholino embryos indicated that CheWnt3 participates in an active axial patterning system involving reciprocal downregulation of the receptors to maintain oral and aboral territories. Localised introduction of CheWnt3 RNA induced ectopic oral poles in CheWnt3 morpholino embryos, demonstrating its importance in directing oral fate. These findings suggest that the complete ligand-dependent Wnt signalling cascade is involved in axial patterning in ancestral eumetazoans. In Clytia, two variant Frizzled receptors and one Wnt ligand produced from localised RNAs cooperate to initiate regionalised Wnt pathway activation.

摘要

通过β-连环蛋白稳定作用实现的经典Wnt信号通路的区域化激活是许多后生动物胚胎模式形成的关键早期步骤,包括基部演化分歧的刺胞动物,但上游母体信号却出人意料地多变。在海月水母中,定义假定“口部”区域的区域化β-连环蛋白稳定作用由两个母体编码的具有相反定位和功能的卷曲蛋白家族Wnt受体决定。我们鉴定出一种母体编码的配体CheWnt3,其RNA定位于卵子的动物皮质(未来的口部一侧)。反义吗啉代寡核苷酸实验表明,CheWnt3在母体中是早期胚胎区域化口部β-连环蛋白稳定作用所必需的,这是继非洲爪蟾Xwnt11之后第二个明确的母体所需Wnt配体的例子。与母体定位的卷曲蛋白的决定性作用一致,通过RNA注射过表达CheWnt3最初对建立口部区域几乎没有影响。然而,随后过表达对轴发育产生了显著影响,导致β-连环蛋白稳定作用逐渐扩展,产生球形的“口化”幼虫。CheWnt3吗啉代胚胎中CheFz1和CheFz3 RNA的上调表明,CheWnt3参与了一个活跃的轴向模式形成系统,该系统涉及受体的相互下调以维持口部和反口部区域。在CheWnt3吗啉代胚胎中局部引入CheWnt3 RNA可诱导异位口极,证明其在指导口部命运中的重要性。这些发现表明,完整的依赖配体的Wnt信号级联参与了祖先真后生动物的轴向模式形成。在海月水母中,由局部RNA产生的两个变体卷曲蛋白受体和一个Wnt配体协同启动区域化Wnt通路激活。

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