4.3 Article

Combined experience of six independent laboratories attempting to create an Ewing sarcoma mouse model

Journal

ONCOTARGET
Volume 8, Issue 21, Pages 34141-34163

Publisher

IMPACT JOURNALS LLC
DOI: 10.18632/oncotarget.9388

Keywords

Ewing sarcoma; EWS-FLI1; EWS-FLI1 driven transgenic mouse model

Funding

  1. Deutsche Forschungsgemeinschaft Collaborative Research Centre 1149 [INST 40/492-1, SPP 1468 Tu220/6-2]
  2. Children's Cancer Foundation
  3. St. Baldrick's Foundation
  4. Go4theGoal
  5. Burroughs Wellcome Clinical Scientist Award in Translational Research
  6. NIH [RC4CA156509, R01CA133662, R01CA138212]
  7. National Cancer Institute [P30 CA51008]
  8. Institut National de la Sante et de la Recherche Medicale
  9. Institut Curie
  10. Institut National du Cancer
  11. Ligue Nationale contre le Cancer
  12. Reseau National des Genopoles, Agence National de la Recherche
  13. societe Francaise des Cancers de l'Enfant
  14. Grants-in-Aid for Scientific Research [26250029, 16H02676] Funding Source: KAKEN

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Ewing sarcoma (ES) involves a tumor-specific chromosomal translocation that produces the EWS-FLI1 protein, which is required for the growth of ES cells both in vitro and in vivo. However, an EWS-FLI1-driven transgenic mouse model is not currently available. Here, we present data from six independent laboratories seeking an alternative approach to express EWS-FLI1 in different murine tissues. We used the Runx2, Col1a2.3, Col1a3.6, Prx1, CAG, Nse, NEFL, Dermo1, P0, Sox9 and Osterix promoters to target EWS-FLI1 or Cre expression. Additional approaches included the induction of an endogenous chromosomal translocation, in utero knock-in, and the injection of Cre-expressing adenovirus to induce EWS-FLI1 expression locally in multiple lineages. Most models resulted in embryonic lethality or developmental defects. EWS-FLI1-induced apoptosis, promoter leakiness, the lack of potential cofactors, and the difficulty of expressing EWS-FLI1 in specific sites were considered the primary reasons for the failed attempts to create a transgenic mouse model of ES.

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