PAX3-FOXO1 transgenic zebrafish models identify HES3 as a mediator of rhabdomyosarcoma tumorigenesis

Author:

Kendall Genevieve C12ORCID,Watson Sarah3,Xu Lin1,LaVigne Collette A12,Murchison Whitney1,Rakheja Dinesh14ORCID,Skapek Stephen X1,Tirode Franck5ORCID,Delattre Olivier367,Amatruda James F128ORCID

Affiliation:

1. Department of Pediatrics, UT Southwestern Medical Center, Dallas, United States

2. Department of Molecular Biology, UT Southwestern Medical Center, Dallas, United States

3. Institut Curie, Paris Sciences et Lettres (PSL) Research University, Inserm U830, Institut Curie, Paris Sciences et Lettres (PSL) Research University, Paris, France

4. Department of Pathology, UT Southwestern Medical Center, Dallas, United States

5. Univ Lyon, Université Claude Bernard Lyon 1, INSERM 1052, CNRS 5286, Centre LéonBérard, Lyon, France

6. INSERM U80, Institute Curie Research Center, Paris, France

7. Institut Curie Hospital Group, Unité de Génétique Somatique, Paris, France

8. Department of Internal Medicine, UT Southwestern Medical Center, Dallas, United States

Abstract

Alveolar rhabdomyosarcoma is a pediatric soft-tissue sarcoma caused by PAX3/7-FOXO1 fusion oncogenes and is characterized by impaired skeletal muscle development. We developed human PAX3-FOXO1 -driven zebrafish models of tumorigenesis and found that PAX3-FOXO1 exhibits discrete cell lineage susceptibility and transformation. Tumors developed by 1.6–19 months and were primitive neuroectodermal tumors or rhabdomyosarcoma. We applied this PAX3-FOXO1 transgenic zebrafish model to study how PAX3-FOXO1 leverages early developmental pathways for oncogenesis and found that her3 is a unique target. Ectopic expression of the her3 human ortholog, HES3, inhibits myogenesis in zebrafish and mammalian cells, recapitulating the arrested muscle development characteristic of rhabdomyosarcoma. In patients, HES3 is overexpressed in fusion-positive versus fusion-negative tumors. Finally, HES3 overexpression is associated with reduced survival in patients in the context of the fusion. Our novel zebrafish rhabdomyosarcoma model identifies a new PAX3-FOXO1 target, her3/HES3, that contributes to impaired myogenic differentiation and has prognostic significance in human disease.

Funder

Cancer Prevention and Research Institute of Texas

American Association for Cancer Research

Alex's Lemonade Stand Foundation for Childhood Cancer

Hartwell Foundation

Ligue National Contre le Cancer

Publisher

eLife Sciences Publications, Ltd

Subject

General Immunology and Microbiology,General Biochemistry, Genetics and Molecular Biology,General Medicine,General Neuroscience

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