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.

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.

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