刺胞动物胚胎中的平面细胞极性协调为动物体轴进化提供了线索

Julie Uveira, Antoine Donati, Marvin Léria, Marion Lechable, François Lahaye, Christine Vesque, Evelyn Houliston, Tsuyoshi Momose
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引用次数: 0

摘要

体轴规格化是动物胚胎发生过程中的一个关键事件,也是动物界形成的一个重要的进化创新。它涉及两个不同的组成部分,它们协调建立胚胎的空间组织:区域化基因表达级联的启动和形态发生过程(如身体伸长)的定向。人们对第一部分的浓厚兴趣表明,Wnt/β-catenin 信号最初负责启动区域基因表达,但定向形态发生的进化起源却很少受到关注。在这里,我们通过研究刺丝胞动物Clytia hemisphaerica胚胎体轴发育的细胞和形态基础,发现了Wnt/β-catenin信号与定向形态发生之间简单且可能是祖先的协调机制。我们发现,配体 Wnt3(已知可通过局部激活 Wnt/β-catenin 通路启动口腔基因表达)还具有不依赖于 β-catenin 的关键作用,即在全球范围内确定平面细胞极性(PCP)的方向,以指导沿口腔-肛门轴的形态发生。这种平面细胞极性定向分为两个不同的步骤:Wnt3的局部定向和保守的核心平面细胞极性蛋白相互作用沿体轴的全局传播。根据这些发现,我们提出了动物身体计划出现的基础--PCP驱动的对称性打破的新方案。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Planar cell polarity coordination in a cnidarian embryo provides clues to animal body axis evolution
Body axis specification is a crucial event in animal embryogenesis, and was an essential evolutionary innovation for founding the animal kingdom. It involves two distinct components that coordinate to establish the spatial organisation of the embryo: initiation of cascades of regionalised gene expression and orientation of morphogenetic processes such as body elongation. Intense interest in the first component has revealed Wnt/β-catenin signalling as ancestrally responsible for initiating regional gene expression, but the evolutionary origin of oriented morphogenesis has received little attention. Here, by addressing the cell and morphological basis of body axis development in embryos of the cnidarian Clytia hemisphaerica, we have uncovered a simple and likely ancestral coordination mechanism between Wnt/β-catenin signalling and directed morphogenesis. We show that the ligand Wnt3, known to initiate oral gene expression via localised Wnt/β-catenin pathway activation, also has a key β-catenin-independent role in globally orienting planar cell polarity (PCP) to direct morphogenesis along the oral-aboral axis. This PCP orientation occurs in two distinct steps: local orientation by Wnt3 and global propagation by conserved core PCP protein interactions along the body axis. From these findings we propose novel scenarios for PCP-driven symmetry-breaking underlying the emergence of the animal body plan.
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