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10.1038/ncomms7556

http://scihub22266oqcxt.onion/10.1038/ncomms7556
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C4380165!4380165!25766473
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suck abstract from ncbi


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pmid25766473      Nat+Commun 2015 ; 6 (ä): 6556
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  • Notch1-Dll4 signaling and mechanical force regulate leader cell formation during collective cell migration #MMPMID25766473
  • Riahi R; Sun J; Wang S; Long M; Zhang DD; Wong PK
  • Nat Commun 2015[]; 6 (ä): 6556 PMID25766473show ga
  • 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 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 modeling to show that leader cell identity is dynamically regulated by Dll4 signaling 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 signaling to dynamically regulate the density of leader cells during collective cell migration.
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