bioRxiv · 10.1101/2023.06.25.546328
Patterning and folding of intestinal villi by active mesenchymal dewetting
Abstract
Tissue folding generates structural motifs critical to organ function. In the intestine, bending of a flat epithelium into a periodic pattern of folds gives rise to villi, the numerous finger-like protrusions that are essential for nutrient absorption. However, the molecular and mechanical mechanisms driving the initiation and morphogenesis of villi remain a matter of debate. Here, we identify an active mechanical mechanism that simultaneously patterns and folds intestinal villi. We find that PDGFRA+ subepithelial mesenchymal cells generate myosin II-dependent forces sufficient to produce patterned curvature in neighboring tissue interfaces. At the cell-level, this occurs through a process dependent upon matrix metalloproteinase-mediated tissue fluidization and altered cell-ECM adhesion. By combining computational models with in vivo experiments, we reveal these cellular features manifest at the tissue-level as differences in interfacial tensions that promote mesenchymal aggregation and interface bending through a process analogous to the active de-wetting of a thin liquid film.
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Huycke, T. R., Miyazaki, H., Häkkinen, T., Srivastava, V., Barruet, E., McGinnis, C. S., Kalantari, A., Cornwall-Scoones, J., Vaka, D., Zhu, Q., Jo, H., DeGrado, W. F., Thomson, M., Garikipati, K., Boffelli, D., Klein, O. D., Gartner, Z. J.. 2023-06-26. Patterning and folding of intestinal villi by active mesenchymal dewetting. https://doi.org/10.1101/2023.06.25.546328
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