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The second European interdisciplinary Ewing sarcoma research summit--A joint effort to deconstructing the multiple
Heinrich Kovar1,2, James Amatruda3, Erika Brunet4
1Children's Cancer Research Institute, St. Anna Kinderkrebsforschung, Vienna, Austria.
Abstract:
Despite multimodal treatment, long term outcome for patients with Ewing sarcoma is still poor. The second "European interdisciplinary Ewing sarcoma research summit" assembled a large group of scientific experts in the field to discuss their latest unpublished findings on the way to the identification of novel therapeutic targets and strategies. Ewing sarcoma is characterized by a quiet genome with presence of an EWSR1-ETS gene rearrangement as the only and defining genetic aberration. RNA-sequencing of recently described Ewing-like sarcomas with variant translocations identified them as biologically distinct diseases. Various presentations adressed mechanisms of EWS-ETS fusion protein activities with a focus on EWS-FLI1. Data were presented shedding light on the molecular underpinnings of genetic permissiveness to this disease uncovering interaction of EWS-FLI1 with recently discovered susceptibility loci. Epigenetic context as a consequence of the interaction between the oncoprotein, cell type, developmental stage, and tissue microenvironment emerged as dominant theme in the discussion of the molecular pathogenesis and inter- and intra-tumor heterogeneity of Ewing sarcoma, and the difficulty to generate animal models faithfully recapitulating the human disease. The problem of preclinical development of biologically targeted therapeutics was discussed and promising perspectives were offered from the study of novel in vitro models. Finally, it was concluded that in order to facilitate rapid pre-clinical and clinical development of novel therapies in Ewing sarcoma, the community needs a platform to maintain knowledge of unpublished results, systems and models used in drug testing and to continue the open dialogue initiated at the first two Ewing sarcoma summits.
Insights
Experts convened to discuss Ewing sarcoma, a cancer with a unique genetic driver (EWSR1-ETS). Research highlights the role of epigenetics and EWS-ETS fusion proteins in disease development, aiming for novel therapeutic targets.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- Ewing sarcoma has a poor long-term prognosis despite current multimodal treatments.
- The disease is genetically defined by EWSR1-ETS gene rearrangements, with a generally quiescent genome otherwise.
- Ewing-like sarcomas with variant translocations represent distinct biological entities.
Purpose of the Study:
- To discuss the latest unpublished findings on novel therapeutic targets and strategies for Ewing sarcoma.
- To explore the molecular pathogenesis, heterogeneity, and preclinical development challenges of Ewing sarcoma.
Main Methods:
- Discussion of unpublished findings from leading scientific experts.
- Review of RNA-sequencing data for Ewing-like sarcomas.
- Analysis of EWS-ETS fusion protein activities and interactions with susceptibility loci.
- Exploration of epigenetic contexts and their role in pathogenesis.
Main Results:
- EWS-ETS fusion proteins, particularly EWS-FLI1, are central to Ewing sarcoma pathogenesis.
- Genetic permissiveness and epigenetic factors significantly influence disease development and heterogeneity.
- Novel in vitro models show promise for preclinical development of targeted therapies.
- Challenges remain in creating accurate animal models for Ewing sarcoma.
Conclusions:
- A collaborative platform is needed to share unpublished results, models, and drug-testing systems.
- Continued open dialogue among researchers is crucial for accelerating therapeutic development.
- Understanding epigenetic context is key to addressing Ewing sarcoma heterogeneity and treatment resistance.
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