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首页> 外文期刊>Developmental biology >E-cadherin is required for cranial neural crest migration in Xenopus laevis
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E-cadherin is required for cranial neural crest migration in Xenopus laevis

机译:e-cadherin是Xenopus Laevis中的颅神经嵴迁移所必需的

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The cranial neural crest (CNC) is a highly motile and multipotent embryonic cell population, which migrates directionally on defined routes throughout the embryo, contributing to facial structures including cartilage, bone and ganglia. Cadherin-mediated cell-cell adhesion is known to play a crucial role in the directional migration of CNC cells. However, migrating CNC co-express different cadherin subtypes, and their individual roles have yet to be fully explored. In previous. studies, the expression of individual cadherin subtypes has been analysed using different methods with varying sensitivities, preventing the direct comparison of expression levels. Here, we provide the first comprehensive and comparative analysis of the expression of six cadherin superfamily members during different phases of CNC cell migration in Xenopus. By applying a quantitative RT-qPCR approach, we can determine the copy number and abundance of each expressed cadherin through different phases of CNC migration. Using this approach, we show for the first time expression of E-cadherin and XB/C-cadherin in CNC cells, adding them as two new members of cadherins co-expressed during CNC migration. Cadherin co-expression during CNC migration in Xenopus, in particular the constant expression of E-cadherin, contradicts the classical epithelial-mesenchymal transition (EMT) model postulating a switch in cadherin expression. Loss-of-function experiments further show that E-cadherin is required for proper CNC cell migration in vivo and also for cell protrusion formation in vitro. Knockdown of E-cadherin is not rescued by co-injection of other classical cadherins, pointing to a specific function of E-cadherin in mediating CNC cell migration. Finally, through reconstitution experiments with different E-cadherin deletion mutants in E-cadherin morphant embryos, we demonstrate that the extracellular domain, but not the cytoplasmic domain, of E-cadherin is sufficient to rescue CNC cell migration in vivo. (C) 2016 Elsevier Inc. All rights reserved.
机译:颅神经嵴(CNC)是一种高度运动和多能胚胎细胞群,其定向迁移到整个胚胎中的定义途径,有助于面部结构,包括软骨,骨骼和神经节。已知钙粘蛋白介导的细胞 - 细胞粘附在CNC细胞的定向迁移中起着至关重要的作用。然而,迁移CNC CO-CHAKESS不同的钙粘蛋白亚型,他们的个人角色尚未得到充分探索。在以前。研究,使用不同的方法分析各种钙粘蛋白亚型的表达,具有不同的敏感性,防止表达水平的直接比较。在此,我们在南欧枢轴中不同阶段的不同阶段进行六个钙粘蛋白超家族成员的第一个综合和比较分析。通过施加定量RT-QPCR方法,我们可以通过CNC迁移的不同阶段确定每种表达的钙粘蛋白的拷贝数和丰度。使用这种方法,我们展示了在CNC细胞中首次表达E-Cadherin和XB / C-C-钙粘蛋白,将其作为在CNC迁移期间共同表达的两个新成员。在外爪管中CNC迁移期间的钙粘蛋白共表达,特别是E-Cadherin的常数表达,与在Cadherin表达中的开关中的经典上皮 - 间充质转换(EMT)模型相矛盾。函数丧失实验进一步表明,在体内适当的CNC细胞迁移需要E-钙粘蛋白,并且还需要在体外​​进行细胞突出形成。通过共注入其他经典钙丝蛋白没有拯救E-Cadherin的敲低,指向E-Cadherin在介导CNC细胞迁移中的特定功能。最后,通过在E-Cadherin Morphant胚胎中具有不同E-Cadherin缺失突变体的重构实验,我们证明了E-Cadherin的细胞外结构域,但不是细胞质结构域的E-钙粘蛋白足以在体内撤消CNC细胞迁移。 (c)2016 Elsevier Inc.保留所有权利。

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