bioRxiv · 10.1101/2025.05.07.652632
Residual Breast Cancer Cells Co-opt SOX5-driven Endochondral Ossification to Maintain Dormancy
Abstract
Recurrent breast cancer accounts for most disease-associated mortality and can develop decades after primary tumor therapy. Recurrences arise from residual tumor cells (RTCs) that can evade therapy in a dormant state, however the mechanisms are poorly understood. CRISPR-Cas9 screening identified the transcription factors SOX5/6 as functional regulators of tumor recurrence. Loss of SOX5 accelerated recurrence and promoted escape from dormancy. Remarkably, SOX5 drove dormant RTCs to adopt a cartilage-dependent bone development program, termed endochondral ossification, that was confirmed by [18F]NaF-PET imaging and reversed in recurrent tumors escaping dormancy. In patients, osteochondrogenic gene expression in primary breast cancers or residual disease post-neoadjuvant therapy predicted improved recurrence-free survival. These findings suggest that SOX5-dependent mesodermal transdifferentiation constitutes an adaptive mechanism that prevents recurrence by reinforcing tumor cell dormancy.
Source connections
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
Sreekumar, A., Blankemeyer, E., Sterner, C. J., Pan, T.-C., Pant, D. K., Acolatse, S., Turkistani, H., Belka, G. K., Carlin, S. D., Assenmacher, C.-A., Sellmyer, M. A., Mankoff, D. A., Chodosh, L. A.. 2025-05-10. Residual Breast Cancer Cells Co-opt SOX5-driven Endochondral Ossification to Maintain Dormancy. https://doi.org/10.1101/2025.05.07.652632
Cite the original work for its findings. Save a collection to share your selection of sources.