Keratins coordinate tissue spreading by balancing spreading forces with tissue material properties
Naik, S.; Keta, Y.-E.; Pranjic-Ferscha, K.; Hannezo, E.; Henkes, S.; Heisenberg, C.-P.
Show abstract
For tissues to spread, they must be deformable while maintaining their structural integrity. How these opposing requirements are balanced within spreading tissues is not yet well understood. Here, we show that keratin intermediate filaments function in epithelial spreading by adapting tissue mechanical resilience to the stresses arising in the tissue during the spreading process. By analysing the expansion of the enveloping cell layer (EVL) over the large yolk cell in early zebrafish embryos in vivo, we found that keratin network maturation in EVL cells is promoted by stresses building up within the spreading tissue. Through genetic interference and tissue rheology experiments, complemented by a vertex model with mechanochemical feedback, we demonstrate that stress-induced keratin network maturation in the EVL increases tissue viscosity, which is essential for preventing tissue rupture. Interestingly, keratins are also required in the yolk cell for mechanosensitive actomyosin network contraction and flow, the force-generating processes pulling the EVL. These dual mechanosensitive functions of keratins enable a balance between pulling force production in the yolk cell and the mechanical resilience of the EVL against stresses generated by these pulling forces, thereby ensuring uniform and robust tissue spreading.
Matching journals
The top 4 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- A sheath of motile cells supports collective migration of the Zebrafish posterior lateral line primordium under the skin 97%
- Fgf4 is critical for maintaining Hes7 levels and Notch oscillations in the somite segmentation clock 97%
- An atypical basement membrane forms a midline barrier during left-right asymmetric gut development in the chicken embryo 96%
Similar papers in this journal
- Collective nuclear behavior shapes bilateral nuclear symmetry for subsequent left-right asymmetric morphogenesis in Drosophila 96%
- Control of gastruloid patterning and morphogenesis by the Erk and Akt signaling pathways 96%
- Cell polarity determinant Dlg1 facilitates epithelial invagination by promoting tissue-scale mechanical coordination 96%
Similar papers in this journal
- Alcam-a and Pdgfr-α are essential for the development of sclerotome derived stromal cells that support hematopoiesis in vivo. 97%
- Occurrence of non-apical mitoses at the primitive streak, induced by relaxation of actomyosin and acceleration of the cell cycle, contributes to cell delamination during mouse gastrulation. 97%
- Calcium transients regulate epithelial integration of multiciliated cells during Xenopus skin development. 96%
Similar papers in this journal
- Tissue mechanics and systemic signaling safeguard epithelial tissue against spindle misorientation. 96%
- Actomyosin contractility in olfactory placode neurons opens the skin epithelium to form the nostril 95%
- Microtubules coordinate mitochondria transport with myofibril morphogenesis during muscle development 95%
Similar papers in this journal
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.