FB2026_03 , released September 17, 2026
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Monier, B., Gettings, M., Gay, G., Mangeat, T., Schott, S., Guarner, A., Suzanne, M. (2015). Apico-basal forces exerted by apoptotic cells drive epithelium folding.  Nature 518(7538): 245--248.
FlyBase ID
FBrf0227670
Publication Type
Research paper
Abstract
Epithelium folding is a basic morphogenetic event that is essential in transforming simple two-dimensional epithelial sheets into three-dimensional structures in both vertebrates and invertebrates. Folding has been shown to rely on apical constriction. The resulting cell-shape changes depend either on adherens junction basal shift or on a redistribution of myosin II, which could be driven by mechanical signals. Yet the initial cellular mechanisms that trigger and coordinate cell remodelling remain largely unknown. Here we unravel the active role of apoptotic cells in initiating morphogenesis, thus revealing a novel mechanism of epithelium folding. We show that, in a live developing tissue, apoptotic cells exert a transient pulling force upon the apical surface of the epithelium through a highly dynamic apico-basal myosin II cable. The apoptotic cells then induce a non-autonomous increase in tissue tension together with cortical myosin II apical stabilization in the surrounding tissue, eventually resulting in epithelium folding. Together our results, supported by a theoretical biophysical three-dimensional model, identify an apoptotic myosin-II-dependent signal as the initial signal leading to cell reorganization and tissue folding. This work further reveals that, far from being passively eliminated as generally assumed (for example, during digit individualization), apoptotic cells actively influence their surroundings and trigger tissue remodelling through regulation of tissue tension.
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PubMed Central ID
Related Publication(s)
Note

Cell biology: Death drags down the neighbourhood.
Vasquez and Martin, 2015, Nature 518(7538): 171--173 [FBrf0227740]

Epithelial morphogenesis: apoptotic forces drive cell shape changes.
Kiehart, 2015, Dev. Cell 32(5): 532--533 [FBrf0228312]

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Secondary IDs
    Language of Publication
    English
    Additional Languages of Abstract
    Parent Publication
    Publication Type
    Journal
    Abbreviation
    Nature
    Title
    Nature
    Publication Year
    1869-
    ISBN/ISSN
    0028-0836
    Data From Reference
    Genes (3)