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Coordinated Action of N-CAM N-cadherin EphA4 and ephrinB2 Translates Genetic Prepatterns into Structure during Somitogenesis in Chick

机译:N-CAMN-钙黏着蛋白EphA4和ephrinB2的协同作用将鸡的体细胞发生过程中的遗传模式转化为结构。

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摘要

During gastrulation in vertebrates, mesenchymal cells at the anterior end of the pre-somitic mesoderm (PSM) periodically compact, transiently epithelialize and detach from the posterior PSM to form somites. In the prevailing clock-and-wavefront model of somitogenesis, periodic gene expression, particularly of Notch and Wnt, interacts with an FGF8-based thresholding mechanism to determine cell fates. However, this model does not explain how cell determination and subsequent differentiation translates into somite morphology. In this paper, we use computer simulations of chick somitogenesis to show that experimentally-observed temporal and spatial patterns of adhesive N-CAM and N-cadherin and repulsive EphA4–ephrinB2 pairs suffice to reproduce the complex dynamic morphological changes of somitogenesis in wild-type and N-cadherin (−/−) chick, including intersomitic separation, boundary-shape evolution and sorting of misdifferentiated cells across compartment boundaries. Since different models of determination yield the same, experimentally-observed, distribution of adhesion and repulsion molecules, the patterning is independent of the details of this mechanism.
机译:在脊椎动物的胃排卵过程中,前体间中胚层(PSM)前端的间充质细胞会周期性地致密,短暂上皮化并从后部PSM分离形成体节。在流行的钟表和波前模型中,周期性基因表达,特别是Notch和Wnt的周期性基因表达,与基于FGF8的阈值确定机制相互作用,以确定细胞命运。但是,该模型不能解释细胞测定和随后的分化如何转化为松节体形态。在本文中,我们使用计算机模拟鸡的体细胞发生,以表明实验观察到的粘着性N-CAM和N-钙粘蛋白以及排斥性EphA4-ephrinB2对的时空格局足以重现野生型体细胞发生的复杂动态形态学变化。和N-钙黏着蛋白(-/-)小鸡,包括代间分离,边界形状演变和跨区室边界的未分化细胞分类。由于不同的测定模型会产生相同的,实验观察到的粘附和排斥分子分布,因此图案化与该机制的细节无关。

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