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首页> 外文期刊>Nature cell biology >Interplay of RhoA and mechanical forces in collective cell migration driven by leader cells.
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Interplay of RhoA and mechanical forces in collective cell migration driven by leader cells.

机译:RhoA和机械力在前导细胞驱动的集体细胞迁移中的相互作用。

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The leading front of a collectively migrating epithelium often destabilizes into multicellular migration fingers where a cell initially similar to the others becomes a leader cell while its neighbours do not alter. The determinants of these leader cells include mechanical and biochemical cues, often under the control of small GTPases. However, an accurate dynamic cartography of both mechanical and biochemical activities remains to be established. Here, by mapping the mechanical traction forces exerted on the surface by MDCK migration fingers, we show that these structures are mechanical global entities with the leader cells exerting a large traction force. Moreover, the spatial distribution of RhoA differential activity at the basal plane strikingly mirrors this force cartography. We propose that RhoA controls the development of these fingers through mechanical cues: the leader cell drags the structure and the peripheral pluricellular acto-myosin cable prevents the initiation of new leader cells.
机译:集体迁移的上皮细胞的前端通常不稳定进入多细胞迁移手指,在那里最初与其他细胞相似的细胞成为前导细胞,而其相邻细胞却没有改变。这些前导细胞的决定因素包括机械和生化线索,通常在小GTP酶的控制下。但是,仍然需要建立机械和生化活动的精确动态制图。在这里,通过映射由MDCK迁移指施加在表面上的机械牵引力,我们表明这些结构是机械的整体实体,前导单元施加了较大的牵引力。此外,在基面上的RhoA差异活性空间分布显着反映了这种力图。我们建议RhoA通过机械提示控制这些手指的发育:前导细胞拖曳结构,外围的多细胞肌动蛋白-肌球蛋白电缆阻止新的前导细胞的启动。

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