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Collective mesendoderm migration relies on an intrinsic directionality signal transmitted through cell contacts

机译:集体中胚层迁移依赖于通过细胞触点传输的内在方向性信号

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摘要

Collective cell migration is key to morphogenesis, wound healing, or cancer cell migration. However, its cellular bases are just starting to be unraveled. During vertebrate gastrulation, axial mesendoderm migrates in a group, the prechordal plate, from the embryonic organizer to the animal pole. How this collective migration is achieved remains unclear. Previous work has suggested that cells migrate as individuals, with collective movement resulting from the addition of similar individual cell behavior. Through extensive analyses of cell trajectories, morphologies, and polarization in zebrafish embryos, we reveal that all prechordal plate cells show the same behavior and rely on the same signaling pathway to migrate, as expected if they do so individually. However, by using cell transplants, we demonstrate that prechordal plate migration is a true collective process, as isolated cells do not migrate toward the animal pole. They are still polarized and motile but lose directionality. Directionality is restored upon contact with the endogenous prechordal plate. This contact dependent orientation relies on E-cadherin, Wnt-PCP signaling, and Rac1. Importantly, groups of cells also need contact with the endogenous plate to orient correctly, showing an instructive role of the plate in establishing directionality. Overall, our results lead to an original model of collective migration in which directional information is contained within the moving group rather than provided by extrinsic cues, and constantly maintained in cells by contacts with their neighbors. This self-organizing model could account for collective invasion of new territories, as observed in cancer strands, without requirement for any attractant in the colonized tissue.
机译:集体细胞迁移是形态发生,伤口愈合或癌细胞迁移的关键。但是,它的细胞基础才刚刚被弄清楚。在脊椎动物的胃形成过程中,轴向中胚层从胚胎组织者到动物极点成群移动,即弦前板。目前尚不清楚如何实现这种集体迁移。先前的工作表明,细胞可以作为个体迁移,并且由于添加了类似的个体细胞行为而导致集体运动。通过对斑马鱼胚胎中的细胞轨迹,形态和极化的广泛分析,我们发现所有弦前板细胞均表现出相同的行为,并且依赖于相同的信号传导途径进行迁移(如预期的那样)。但是,通过使用细胞移植,我们证明了食道板的迁移是一个真正的集体过程,因为分离的细胞不会向动物极迁移。他们仍然两极分化和运动,但失去方向性。与内源性前房板接触后,方向性得以恢复。此依赖于接触的方向依赖于E-钙粘着蛋白,Wnt-PCP信号传导和Rac1。重要的是,细胞群还需要与内源性板接触才能正确定向,从而显示出板在建立方向性方面的指导作用。总的来说,我们的结果导致了集体迁移的原始模型,其中方向信息包含在移动组中,而不是由外部线索提供,并通过与邻居的接触不断地保持在单元中。如在癌症链中所观察到的那样,这种自组织模型可以解释新领土的集体入侵,而无需在殖民地组织中有任何引诱剂。

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