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海胆早期发育过程中Wnt及Wnt受体mRNA的表达与分布

The expression and distribution of Wnt and Wnt receptor mRNAs during early sea urchin development.

作者信息

Stamateris Rachel E, Rafiq Kiran, Ettensohn Charles A

机构信息

Department of Biological Sciences, Carnegie Mellon University, Pittsburgh, PA 15213, USA.

出版信息

Gene Expr Patterns. 2010 Jan;10(1):60-4. doi: 10.1016/j.gep.2009.10.004. Epub 2009 Oct 22.

Abstract

The protein beta-catenin plays a critically important role in establishing axial polarity during early animal development. In many organisms, beta-catenin is degraded preferentially on one side of the cleavage stage embryo. On the opposite side of the embryo, beta-catenin is stabilized and accumulates in the nucleus, where it functions in concert with members of the LEF/TCF family to activate the transcription of diverse target genes. Genes that are activated by beta-catenin play an essential role in the specification of endomesoderm and in the establishment of key signaling centers in the early embryo. In several organisms, the asymmetric distribution of maternal components of the canonical Wnt pathway has been shown to be responsible for the polarized stabilization of beta-catenin. In this study, we identified all Wnt and Wnt receptor mRNAs that are present in unfertilized sea urchin eggs and early embryos and analyzed their distributions along the primary (AV) axis. Our findings indicate that the asymmetric distribution of a maternal Wnt or Wnt receptor mRNA is unlikely to be a primary determinant of the polarized stabilization of beta-catenin along the AV axis. This contrasts sharply with findings in other organisms and points to remarkable evolutionary flexibility in the molecular mechanisms that underlie this otherwise very highly conserved patterning process.

摘要

蛋白质β-连环蛋白在动物早期发育过程中建立轴向极性方面起着至关重要的作用。在许多生物体中,β-连环蛋白在卵裂期胚胎的一侧优先降解。在胚胎的另一侧,β-连环蛋白被稳定并在细胞核中积累,在那里它与LEF/TCF家族成员协同作用,激活多种靶基因的转录。由β-连环蛋白激活的基因在中内胚层的特化以及早期胚胎关键信号中心的建立中起着至关重要的作用。在几种生物体中,经典Wnt信号通路母体成分的不对称分布已被证明是β-连环蛋白极化稳定的原因。在本研究中,我们鉴定了未受精海胆卵和早期胚胎中存在的所有Wnt和Wnt受体mRNA,并分析了它们沿初级(AV)轴的分布。我们的研究结果表明,母体Wnt或Wnt受体mRNA的不对称分布不太可能是β-连环蛋白沿AV轴极化稳定的主要决定因素。这与其他生物体的研究结果形成了鲜明对比,并表明在这个原本高度保守的模式形成过程背后的分子机制具有显著的进化灵活性。

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