MYC Promotes Aggressive Growth and Metastasis of a WNT-Medulloblastoma Mouse Model
Rachel Hartley1, Timothy N Phoenix1,2
1Division of Pharmaceutical Sciences, James L. Winkle College of Pharmacy, University of Cincinnati, Cincinnati, Ohio, USA.
Abstract:
Medulloblastoma (MB), the most common malignant pediatric brain tumor, comprises four molecularly and clinically distinct subgroups (termed WNT, SHH, group 3, and group 4). Prognosis varies based on genetic and pathological features associated with each molecular subgroup. WNT-MB, considered low-risk, is rarely metastatic and contains activating mutations in CTNNB1; group 3-MB (GRP3-MB), commonly classified as high-risk, is frequently metastatic and can contain genomic alterations, resulting in elevated MYC expression. Here, we compare model systems of low-risk WNT-MB and high-risk GRP3-MB to identify tumor and microenvironment interactions that could contribute to features associated with prognosis. Compared to GRP3-MB, we find that WNT-MB is enriched in gene sets related to extracellular matrix (ECM) regulation and cellular adhesion. Exogenous expression of MycT58A in a murine WNT-MB model significantly accelerates growth and results in metastatic disease. In addition to decreased ECM regulation and cell adhesion pathways, we also identified immune system interactions among the top downregulated signaling pathways following MycT58A expression. Taken together, our data provide evidence that increased Myc signaling can promote the growth and metastasis in a murine model of WNT-MB.
Insights
This study reveals that increased Myc signaling promotes medulloblastoma growth and metastasis in a mouse model. WNT-MB, a low-risk subgroup, shows altered extracellular matrix and cell adhesion pathways when Myc is activated.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- Medulloblastoma (MB) is the most common pediatric brain malignancy, with four distinct molecular subgroups (WNT, SHH, group 3, group 4) exhibiting varied prognoses.
- WNT-MB is low-risk with CTNNB1 mutations, while group 3-MB (GRP3-MB) is high-risk, often metastatic, and associated with elevated MYC expression.
Purpose of the Study:
- To compare model systems of low-risk WNT-MB and high-risk GRP3-MB.
- To identify tumor and microenvironment interactions influencing MB prognosis.
Main Methods:
- Comparative analysis of WNT-MB and GRP3-MB model systems.
- Introduction of MycT58A into a murine WNT-MB model.
- Analysis of gene sets related to extracellular matrix (ECM) regulation, cellular adhesion, and immune system signaling.
Main Results:
- WNT-MB exhibits enrichment in ECM regulation and cell adhesion gene sets compared to GRP3-MB.
- Exogenous MycT58A expression in WNT-MB models accelerated tumor growth and induced metastasis.
- MycT58A expression led to downregulation of ECM regulation, cell adhesion, and immune system signaling pathways.
Conclusions:
- Increased Myc signaling can drive growth and metastasis in a WNT-MB mouse model.
- Tumor-intrinsic Myc signaling impacts the tumor microenvironment, including immune interactions.
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