bioRxiv · 10.1101/578666
Oncogenic hijacking of a developmental transcription factor evokes therapeutic vulnerability for ROS-induction in Ewing sarcoma
Abstract
Ewing sarcoma (EwS) is an aggressive childhood cancer likely originating from mesenchymal stem cells or osteo-chondrogenic progenitors. It is characterized by fusion oncoproteins involving EWSR1 and variable members of the ETS-family of transcription factors (in 85% FLI1). EWSR1-FLI1 can induce target genes by using GGAA-microsatellites (mSats) as enhancers.\n\nHere, we show that EWSR1-FLI1 hijacks the developmental transcription factor SOX6 - a physiological driver of proliferation of osteo-chondrogenic progenitors - by binding to an intronic GGAA-mSat, which promotes EwS growth in vitro and in vivo. Through integration of transcriptome-profiling, published drug-screening data, and functional in vitro and in vivo experiments, we discovered that SOX6 interferes with the antioxidant system resulting in constitutively elevated reactive oxygen species (ROS) levels that create a therapeutic vulnerability toward the ROS-inducing drug Elesclomol.\n\nCollectively, our results exemplify how aberrant activation of a developmental transcription factor by a dominant oncogene can promote malignancy, but provide opportunities for targeted therapy.
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Marchetto, A., Ohmura, S., Orth, M. F., Li, J., Wehweck, F. S., Knott, M. M. L., Stein, S., Saucier, D., Arrigoni, C., Gerke, J. S., Baldauf, M. C., Musa, J., Dallmayer, M., Hoelting, T. L. B., Moretti, M., Amatruda, J. F., Romero-Perez, L., Cidre-Aranaz, F., Kirchner, T., Sannino, G., Grunewald, T. G. P.. 2019-03-14. Oncogenic hijacking of a developmental transcription factor evokes therapeutic vulnerability for ROS-induction in Ewing sarcoma. https://doi.org/10.1101/578666
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