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Updated: Sep 3, 2025

Screening for Melanoma Modifiers using a Zebrafish Autochthonous Tumor Model
Published on: November 13, 2012
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.
Abstract:
Uveal melanoma (UM) is the most common primary malignancy of the adult eye but lacks any FDA-approved therapy for the deadly metastatic disease. Thus, there is a great need to dissect the driving mechanisms for UM and develop strategies to evaluate potential therapeutics. Using an autochthonous zebrafish model, we previously identified MITF, the master melanocyte transcription factor, as a tumor suppressor in GNAQQ209L -driven UM. Here, we show that zebrafish mitfa-deficient GNAQQ209L -driven tumors significantly up-regulate neural crest markers, and that higher expression of a melanoma-associated neural crest signature correlates with poor UM patient survival. We further determined how the mitfa-null state, as well as expression of GNAQQ209L , YAPS127A;S381A , or BRAFV600E oncogenes, impacts melanocyte lineage cells before they acquire the transformed state. Specifically, examination 5 days post-fertilization showed that mitfa-deficiency is sufficient to up-regulate pigment progenitor and neural crest markers, while GNAQQ209L expression promotes a proliferative phenotype that is further enhanced by YAPS127A;S381A co-expression. Finally, we show that this oncogene-induced proliferative phenotype can be used to screen chemical inhibitors for their efficacy against the UM pathway. Overall, this study establishes that a neural crest signature correlates with poor UM survival, and describes an in vivo assay for preclinical trials of potential UM therapeutics.
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.
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