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首页> 外文期刊>Developmental dynamics: an official publication of the American Association of Anatomists >Paraxis is required for somite morphogenesis and differentiation in Xenopus laevis
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Paraxis is required for somite morphogenesis and differentiation in Xenopus laevis

机译:非洲爪蟾的体节形态发生和分化需要paraxis

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Background: In most vertebrates, the segmentation of the paraxial mesoderm involves the formation of metameric units called somites through a mesenchymal-epithelial transition. However, this process is different in Xenopus laevis because it does not form an epithelial somite. Xenopus somitogenesis is characterized by a complex cells rearrangement that requires the coordinated regulation of cell shape, adhesion, and motility. The molecular mechanisms that control these cell behaviors underlying somite formation are little known. Although the Paraxis has been implicated in the epithelialization of somite in chick and mouse, its role in Xenopus somite morphogenesis has not been determined. Results: Using a morpholino and hormone-inducible construction approaches, we showed that both gain and loss of function of paraxis affect somite elongation, rotation and alignment, causing a severe disorganization of somitic tissue. We further found that depletion or overexpression of paraxis in the somite led to the downregulation or upregulation, respectively, of cell adhesion expression markers. Finally, we demonstrated that paraxis is necessary for the proper expression of myotomal and sclerotomal differentiation markers. Conclusions: Our results demonstrate that paraxis regulates the cell rearrangements that take place during the somitogenesis of Xenopus by regulating cell adhesion. Furthermore, paraxis is also required for somite differentiation.
机译:背景:在大多数脊椎动物中,近轴中胚层的分割涉及通过间充质-上皮转化形成称为节体的同聚异体单元。但是,此过程在非洲爪蟾中有所不同,因为它不会形成上皮体。非洲爪蟾的体细胞发生的特征是复杂的细胞重排,需要细胞形状,粘附和运动的协调调节。控制这些分子行为的潜在分子机理是尚不清楚的。尽管Paraxis已牵涉到小鸡和小鼠中somite的上皮形成,但尚未确定其在非洲爪蟾的somite形态发生中的作用。结果:使用吗啉代和激素可诱导的构建方法,我们发现轴突功能的获得和丧失均会影响体节的伸长,旋转和排列,从而导致体细胞组织严重混乱。我们进一步发现,体节中轴的耗竭或过表达分别导致细胞粘附表达标志物的下调或上调。最后,我们证明了轴突是肌和巩膜分化标记物正确表达所必需的。结论:我们的研究结果表明,轴心轴突通过调节细胞粘附来调节爪蟾的体细胞发生过程中发生的细胞重排。此外,体节分化也需要轴轴。

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