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Notch1–Dll4 signalling and mechanical force regulate leader cell formation during collective cell migration

机译:Notch1-Dll4信号传导和机械力调节集体细胞迁移过程中前导细胞的形成

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At the onset of collective cell migration, a subset of cells within an initially homogenous population acquires a distinct ‘leader’ phenotype with characteristic morphology and motility. However, the factors driving the leader cell formation as well as the mechanisms regulating leader cell density during the migration process remain to be determined. Here we use single-cell gene expression analysis and computational modelling to show that the leader cell identity is dynamically regulated by Dll4 signalling through both Notch1 and cellular stress in a migrating epithelium. Time-lapse microscopy reveals that Dll4 is induced in leader cells after the creation of the cell-free region and leader cells are regulated via Notch1 – Dll4 lateral inhibition. Furthermore, mechanical stress inhibits Dll4 expression and leader cell formation in the monolayer. Collectively, our findings suggest that a reduction of mechanical force near the boundary promotes Notch1 – Dll4 signalling to dynamically regulate the density of leader cells during collective cell migration.
机译:在开始集体细胞迁移时,最初同质群体中的一部分细胞会获得具有特征性形态和运动性的独特“前导”表型。然而,在迁移过程中驱动前导细胞形成的因素以及调节前导细胞密度的机制仍有待确定。在这里,我们使用单细胞基因表达分析和计算模型来显示,前导细胞身份是由Dll4信号通过Notch1和细胞应激迁移的上皮细胞动态调节的。延时显微镜显示,Dll4在无细胞区域形成后在前导细胞中被诱导,并且前导细胞通过Notch1-Dll4侧向抑制来调节。此外,机械应力抑制单层中Dll4的表达和前导细胞的形成。总体而言,我们的发现表明,边界附近机械力的降低会促进Notch1-Dll4信号传导,从而在集体细胞迁移过程中动态调节前导细胞的密度。

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