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Schimmer, C.

Publications and source records attributed to Schimmer, C..

2 recordsLinked to original sources

E-cadherin-mediated neighborhood surveillance dictates pre-malignant outcomes

Stratified epithelia accumulate oncogenic mutations throughout life, yet overgrowths are rare. How epithelia detect and eliminate aberrant clones remains poorly understood. Using a mouse model of oncogenic clonal mosaicism in the skin, we find that pre-malignant epidermal cells redistribute E-cadherin to interfaces shared with wild-type neighbors, generating local tension heterogeneity that triggers elimination by cell competition. We show that gain or loss of E-cadherin can each drive competitive elimination, and although mechanical routes differ, both establish tension heterogeneity between neighbors, rather than any absolute adhesion state, as the critical determinant of epidermal fitness. This mechanism carries the seeds of its own failure: these tension differentials precipitate clonal sorting, depleting the wild-type contacts that surveillance requires. Pre-malignant cells then become supercompetitors, eliminating wild-type neighbors and expanding hyperplastically. Mechanical heterogeneity therefore endows tissues with an active, yet inherently fragile error-correction system whose collapse initiates a switch in competitive status, increasing tumorigenesis susceptibility.

cell biology↗

Integrin-based adhesions promote cell-cell junction remodelling and cytoskeletal rearrangements to drive embryonic wound healing

Embryos have a remarkable ability to repair wounds rapidly, with no inflammation or scarring. Embryonic wound healing is driven by the collective movement of the surrounding cells to seal the lesion. During embryonic wound closure, the cells adjacent to the wound polarize the cytoskeletal protein actin and the molecular motor non-muscle myosin II, which accumulate at the wound edge forming a supracellular cable around the wound. Adherens junction proteins including E-cadherin are internalized from the interface with the lesion and localize to former tricellular junctions at the wound margin, in a process necessary for cytoskeletal polarity. Using quantitative live microscopy, we found that the cells adjacent to wounds in the Drosophila epidermis also polarized Talin, a core component of cell-extracellular matrix (ECM) adhesions that links integrins to the actin cytoskeleton. Integrin knock-down and inhibition of integrin binding delayed wound closure and were associated with a reduction in actin levels around the wound. Additionally, disrupting integrins caused a defect in E-cadherin reinforcement at tricellular junctions along the wound edge, suggesting crosstalk between integrin-based and cadherin-based adhesions. Together, our results show that cell-ECM adhesion contributes to embryonic wound repair and reveal an interplay between cell-cell and cell-ECM adhesion in the collective cell movements that drive rapid wound healing.

cell biology↗