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Spatial and Temporal Control of Murine Melanoma Initiation from Mutant Melanocyte Stem Cells
Published on: June 7, 2019
Molecular Analysis of Murine KitK641E Melanoma Progression
Emily Everdell1,2, Zhenyu Ji1,2, Ching-Ni Njauw1,2
1Wellman Center for Photomedicine, Massachusetts General Hospital, Harvard Medical School, Boston, Massachusetts, USA.
Abstract:
Acral and mucosal melanomas are often driven by sequence variants in the KIT receptor tyrosine kinase, with nearly 40% harboring alterations in the KIT locus. Despite advances in the knowledge of KIT-mutated melanomas, little is known about the molecular reprogramming that occurs during KIT-mediated melanoma progression owing to the rarity of acral and mucosal melanomas and the lack of comprehensive biological tools and models. To this end, we used a murine model that allows us to ascertain the molecular underpinnings of the stages of cancer progression-transformation, tumorigenesis, immune engagement, and tumor escalation. We found dramatic increases in biosynthetic demands associated with the transformation stage, including DNA and RNA metabolism, leading to replication stress. Tumorigenesis was closely linked to neuronal and axonal development, likely necessary for invasion into the host. Immune engagement highlighted early immune excitation and rejection pathways, possibly triggered by abrupt neoantigen exposure. Finally, tumor escalation pathways proved consistent with immune evasion, with immune-related pathways becoming significantly downregulated. To our knowledge, it is previously unreported that these critical milestones needed for KIT-driven melanoma tumor formation have been studied at the molecular level using isogenically matched and phenotypically defined cells.
Insights
KIT-driven melanoma progression involves increased biosynthesis, neuronal development, immune engagement, and eventual immune evasion. This study details the molecular reprogramming across these key cancer stages.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Genomics
Background:
- Acral and mucosal melanomas frequently harbor KIT receptor tyrosine kinase alterations.
- Understanding KIT-mediated melanoma progression is limited due to rarity and lack of models.
Purpose of the Study:
- To elucidate the molecular reprogramming during KIT-driven melanoma progression.
- To investigate transformation, tumorigenesis, immune engagement, and tumor escalation stages.
Main Methods:
- Utilized a murine model for studying cancer progression stages.
- Employed isogenically matched and phenotypically defined cells.
Main Results:
- Transformation stage showed increased DNA/RNA metabolism and replication stress.
- Tumorigenesis linked to neuronal development and invasion.
- Immune engagement revealed early immune excitation and rejection.
- Tumor escalation demonstrated immune evasion via downregulated immune pathways.
Conclusions:
- This study provides novel molecular insights into KIT-driven melanoma progression stages.
- Identified distinct molecular underpinnings for transformation, tumorigenesis, immune engagement, and escalation.
- Highlights the dynamic interplay between cancer cells and the immune system during melanoma development.
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