bioRxiv · 10.1101/2021.11.17.468902
Senescent stroma induces nuclear deformations in cancer cells via the inhibition of RhoA/ROCK/myosin II-based cytoskeletal tension
Abstract
The presence of senescent cells within tissues has been functionally linked to malignant transformations. Here, using tension-gauge tethers technology, particle-tracking microrheology, and quantitative microscopy, we demonstrate that senescent associated secretory phenotype (SASP) derived from senescent fibroblasts impose nuclear lobulations and volume shrinkage on malignant cells, which stems from the loss of RhoA/ROCK/myosin II-based cortical tension. This loss in cytoskeletal tension induces decreased cellular contractility, adhesion, and increased mechanical compliance. These SASP-induced morphological changes are in part mediated by lamin A/C. These findings suggest that SASP induces a defective outside-in mechanotransduction, from actomyosin fibers in the cytoplasm to the nuclear lamina, thereby triggering a cascade of biophysical and biomolecular changes in cells that associate with malignant transformations.
Source connections
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
Aifuwa, I., Phillip, J. M., Kim, B., Luperchio, T., Jimenez, A., Perestrelo, T., Lee, S.-H., Longe, N., Reddy, K., Ha, T., Wirtz, D.. 2021-11-18. Senescent stroma induces nuclear deformations in cancer cells via the inhibition of RhoA/ROCK/myosin II-based cytoskeletal tension. https://doi.org/10.1101/2021.11.17.468902
Cite the original work for its findings. Save a collection to share your selection of sources.