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A transgenic zebrafish model expressing KIT-D816V recapitulates features of aggressive systemic mastocytosis
Tugce B Balci1, Sergey V Prykhozhij, Evelyn M Teh
1Department of Pediatrics, IWK Health Centre, Halifax, NS, Canada; Department of Medical Genetics, University of Ottawa, Ottawa, ON, Canada.
Abstract:
Systemic mastocytosis (SM) is a rare myeloproliferative disease without curative therapy. Despite clinical variability, the majority of patients harbour a KIT-D816V mutation, but efforts to inhibit mutant KIT with tyrosine kinase inhibitors have been unsatisfactory, indicating a need for new preclinical approaches to identify alternative targets and novel therapies in this disease. Murine models to date have been limited and do not fully recapitulate the most aggressive forms of SM. We describe the generation of a transgenic zebrafish model expressing the human KIT-D816V mutation. Adult fish demonstrate a myeloproliferative disease phenotype, including features of aggressive SM in haematopoeitic tissues and high expression levels of endopeptidases, consistent with SM patients. Transgenic embryos demonstrate a cell-cycle phenotype with corresponding expression changes in genes associated with DNA maintenance and repair, such as reduced dnmt1. In addition, epcam was consistently downregulated in both transgenic adults and embryos. Decreased embryonic epcam expression was associated with reduced neuromast numbers, providing a robust in vivo phenotypic readout for chemical screening in KIT-D816V-induced disease. This study represents the first zebrafish model of a mast cell disease with an aggressive adult phenotype and embryonic markers that could be exploited to screen for novel agents in SM.
Insights
Researchers developed a novel zebrafish model for systemic mastocytosis (SM), a rare cancer. This model mimics aggressive disease and offers new ways to test treatments for KIT-D816V-driven SM.
Area of Science:
- Hematology
- Oncology
- Zebrafish Models
Background:
- Systemic mastocytosis (SM) is a rare myeloproliferative neoplasm lacking curative treatments.
- Most patients have the KIT-D816V mutation, but current therapies targeting it are insufficient.
- Existing animal models do not fully represent aggressive SM phenotypes.
Purpose of the Study:
- To create a new zebrafish model for studying systemic mastocytosis.
- To investigate the KIT-D816V mutation's effects in vivo.
- To identify potential therapeutic targets and screening methods for SM.
Main Methods:
- Generation of transgenic zebrafish expressing the human KIT-D816V mutation.
- Analysis of adult fish for myeloproliferative disease phenotypes.
- Assessment of gene expression changes and embryonic development in transgenic embryos.
Main Results:
- Adult zebrafish exhibited aggressive SM-like features and high endopeptidase expression.
- Transgenic embryos showed cell-cycle alterations and reduced dnmt1 expression.
- Downregulation of epcam in adults and embryos correlated with reduced neuromast numbers in embryos.
Conclusions:
- The developed zebrafish model accurately recapitulates aggressive systemic mastocytosis.
- Embryonic epcam downregulation serves as a reliable in vivo readout for drug screening.
- This model provides a valuable platform for discovering novel SM therapies.

