bioRxiv · 10.64898/2026.09.02.748955
Synergistic targeting of EP300/CBP and EYA co-activators collapses the rhabdomyosarcoma core regulatory circuit
Abstract
Rhabdomyosarcoma (RMS) is a multi-subtype, high-risk pediatric sarcoma with a low mutational burden. The mutations found in RMS often alter genes involved in transcriptional control. Approaches to target dysregulated RMS transcription have remained elusive. Here, we develop a novel approach to target RMS transcription comprising simultaneous targeting of two distinctly acting transcriptional co-activators. We discover a common identity-controlling pan-RMS core regulatory circuit (CRC) composed of oncogenic and lineage-specific myogenic master transcription factors (mTFs). Using a super-enhancer-based reporter screen, we identify the EP300/CBP inhibitor A485 as a potent inhibitor of the pan-RMS CRC, though with efficacy-limiting toxicities. To enhance efficacy, we identify the mTF-binding co-activator EYA2 as a co-factor of this pan-RMS CRC and exploit a new second-generation EYA1/2 inhibitor, LG1-34, to disrupt its function. Combined co-activator inhibition inactivates the CRC and synergistically reduces RMS growth. This strategy dually targets CRC-associated co-activators to cooperatively suppress the RMS transcriptome and enforce cell death.
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Gustafson, A. L., Nance, S., Gryder, B., Shendy, N. A. M., Wick, L., McKay-Corkum, G., Ritter, K. E., Purdy, S. C., Wolin, A. R., Rosenbaum, S. R., Mathavarajah, S., Demelfi, N. A., Wang, Y., Zhang, Y., Zimmerman, M., Kavirayani, A., Citarella, E. A., Ebegboni, V. J., Hardin, J. W., LaVeck, A., Wang, X., Dharia, N., Hong, A. L., Kugener, G., Boehm, J. S., Roth, J. A., Khan, J., Vazquez, F., Artinger, K., Zhao, R., Langenau, D. M., Qi, J., Stegmaier, K., Abraham, B., Ford, H., Durbin, A. D.. 2026-09-03. Synergistic targeting of EP300/CBP and EYA co-activators collapses the rhabdomyosarcoma core regulatory circuit. https://doi.org/10.64898/2026.09.02.748955
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