MITF deficiency and oncogenic GNAQ each promote proliferation programs in zebrafish melanocyte lineage cells

Grace B Phelps1, Adam Amsterdam1, Hannah R Hagen1

  • 1David H. Koch Institute for Integrative Cancer Research and Department of Biology, Massachusetts Institute of Technology, Cambridge, Massachusetts, USA.

Insights

Uveal melanoma (UM) progression is linked to neural crest markers. A zebrafish model reveals how genetic changes drive UM, offering a new way to test cancer drugs.

Area of Science:

  • Oncology
  • Developmental Biology
  • Genetics

Background:

  • Uveal melanoma (UM) is the most common adult eye cancer, with no effective treatments for metastatic disease.
  • Understanding UM's drivers is crucial for developing new therapies.
  • MITF was previously identified as a tumor suppressor in GNAQ-driven UM.

Purpose of the Study:

  • To investigate the role of MITF deficiency and oncogene expression in UM development.
  • To identify biomarkers correlating with UM patient survival.
  • To establish a preclinical model for testing UM therapeutics.

Main Methods:

  • Utilized an autochthonous zebrafish model of uveal melanoma.
  • Analyzed gene expression, including neural crest markers, in mitfa-deficient and oncogene-expressing cells.
  • Examined melanocyte lineage cells at 5 days post-fertilization.
  • Developed an in vivo assay for drug screening.

Main Results:

  • Mitfa deficiency in zebrafish UM models up-regulated neural crest markers.
  • A neural crest signature in UM patients correlated with poorer survival.
  • GNAQQ209L expression promoted proliferation, enhanced by YAPS127A;S381A.
  • Oncogene-induced proliferation was used to screen chemical inhibitors.

Conclusions:

  • A neural crest signature is associated with poor UM prognosis.
  • MITF deficiency and specific oncogenes contribute to UM pathogenesis.
  • The developed zebrafish model provides a platform for preclinical UM drug evaluation.