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囊胚中中胚层-内胚层转移过程中的毛细作用和活性细胞运动。

Capillarity and active cell movement at mesendoderm translocation in the gastrula.

机构信息

Department of Cell and Systems Biology, University of Toronto, Toronto M5S 3G5, Canada.

Karlsruhe Institute of Technology, 76021 Karlsruhe, Germany.

出版信息

Development. 2021 Mar 29;148(18):dev198960. doi: 10.1242/dev.198960.

Abstract

During gastrulation, leading edge mesendoderm (LEM) advances animally as a wedge-shaped cell mass over the vegetally moving blastocoel roof (BCR). We show that close contact across the BCR-LEM interface correlates with attenuated net advance of the LEM, which is pulled forward by tip cells while the remaining LEM frequently separates from the BCR. Nevertheless, lamellipodia persist on the detached LEM surface. They attach to adjacent LEM cells and depend on PDGF-A, cell-surface fibronectin and cadherin. We argue that active cell motility on the LEM surface prevents adverse capillary effects in the liquid LEM tissue as it moves by being pulled. It counters tissue surface-tension effects with oriented cell movement and bulges the LEM surface out to keep it close to the curved BCR without attaching to it. Proximity to the BCR is necessary, in turn, for the maintenance and orientation of lamellipodia that permit mass cell movement with minimal substratum contact. Together with a similar process in epithelial invagination, vertical telescoping, the cell movement at the LEM surface defines a novel type of cell rearrangement: vertical shearing.

摘要

在原肠胚形成过程中,前肠中胚层(LEM)作为楔形细胞团在植物性移动的囊胚腔顶(BCR)上向前动物推进。我们发现,BCR-LEM 界面的紧密接触与 LEM 的净推进减弱相关联,LEM 的尖端细胞将其向前拉动,而剩余的 LEM 经常与 BCR 分离。然而,片状伪足仍然存在于分离的 LEM 表面上。它们附着在相邻的 LEM 细胞上,并依赖 PDGF-A、细胞表面纤维连接蛋白和钙粘蛋白。我们认为,在 LEM 组织通过被拉动而移动时,LEM 表面上的活跃细胞运动可以防止不良的毛细血管效应。它通过定向细胞运动抵消组织表面张力效应,并使 LEM 表面向外鼓起,以保持与弯曲的 BCR 接近,而无需与之附着。接近 BCR 反过来又是维持和定向片状伪足所必需的,这允许在最小的基质接触下进行大规模细胞运动。与上皮内陷中的类似过程(垂直伸缩)一起,LEM 表面的细胞运动定义了一种新型的细胞重排:垂直剪切。

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