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Updated: Jan 4, 2026

Quantitative Methods to Study Protein Arginine Methyltransferase 1-9 Activity in Cells
Published on: August 7, 2021
Role of protein arginine methyltransferase 5 in group 3 (MYC-driven) Medulloblastoma
Nagendra K Chaturvedi1, Sidharth Mahapatra2,3, Varun Kesherwani4
1Department of Pediatrics, Division of Hematology and Oncology, University of Nebraska Medical Center, Omaha, NE, 68198, USA. nchaturvedi@unmc.edu.
Background:
MYC amplification or overexpression is common in Group 3 medulloblastoma and is associated with the worst prognosis. Recently, protein arginine methyl transferase (PRMT) 5 expression has been closely associated with aberrant MYC function in various cancers, including brain tumors such as glioblastoma. However, the role of PRMT5 and its association with MYC in medulloblastoma have not been explored. Here, we report the role of PRMT5 as a novel regulator of MYC and implicate PRMT5 as a potential therapeutic target in MYC-driven medulloblastoma.
Methods:
Expression and association between PRMT5 and MYC in primary medulloblastoma tumors were investigated using publicly available databases. Expression levels of PRMT5 protein were also examined using medulloblastoma cell lines and primary tumors by western blotting and immunohistochemistry, respectively. Using MYC-driven medulloblastoma cells, we examined the physical interaction between PRMT5 and MYC by co-immunoprecipitation and co-localization experiments. To determine the functional role of PRMT5 in MYC-driven medulloblastoma, PRMT5 was knocked-down in MYC-amplified cells using siRNA and the consequences of knockdown on cell growth and MYC expression/stability were investigated. In vitro therapeutic potential of PRMT5 in medulloblastoma was also evaluated using a small molecule inhibitor, EPZ015666.
Results:
We observed overexpression of PRMT5 in MYC-driven primary medulloblastoma tumors and cell lines compared to non-MYC medulloblastoma tumors and adjacent normal tissues. We also found that high expression of PRMT5 is inversely correlated with patient survival. Knockdown of PRMT5 using siRNA in MYC-driven medulloblastoma cells significantly decreased cell growth and MYC expression. Mechanistically, we found that PRMT5 physically associated with MYC by direct protein-protein interaction. In addition, a cycloheximide chase experiment showed that PRMT5 post-translationally regulated MYC stability. In the context of therapeutics, we observed dose-dependent efficacy of PRMT5 inhibitor EPZ015666 in suppressing cell growth and inducing apoptosis in MYC-driven medulloblastoma cells. Further, the expression levels of PRMT5 and MYC protein were downregulated upon EPZ015666 treatment. We also observed a superior efficacy of this inhibitor against MYC-amplified medulloblastoma cells compared to non-MYC-amplified medulloblastoma cells, indicating specificity.
Conclusion:
Our results reveal the regulation of MYC oncoprotein by PRMT5 and suggest that targeting PRMT5 could be a potential therapeutic strategy for MYC-driven medulloblastoma.
Insights
Protein arginine methyl transferase (PRMT5) regulates MYC oncoprotein in medulloblastoma. Targeting PRMT5 shows therapeutic potential for MYC-driven medulloblastoma, improving patient survival outcomes.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Genetics
Background:
- MYC amplification is prevalent in Group 3 medulloblastoma, correlating with poor prognosis.
- Protein arginine methyl transferase (PRMT) 5 expression is linked to aberrant MYC function in various cancers, including glioblastoma.
- The specific role of PRMT5 and its association with MYC in medulloblastoma remain underexplored.
Purpose of the Study:
- To investigate the role of PRMT5 as a regulator of MYC in medulloblastoma.
- To assess the potential of PRMT5 as a therapeutic target in MYC-driven medulloblastoma.
Main Methods:
- Analysis of PRMT5 and MYC expression and association in public medulloblastoma datasets.
- Western blotting and immunohistochemistry to examine PRMT5 protein levels in cell lines and tumors.
- Co-immunoprecipitation and co-localization to study PRMT5-MYC interaction.
- siRNA-mediated PRMT5 knockdown to assess effects on cell growth and MYC stability.
- In vitro evaluation of the PRMT5 inhibitor EPZ015666.
Main Results:
- PRMT5 was overexpressed in MYC-driven medulloblastoma tumors and cell lines, inversely correlated with patient survival.
- PRMT5 knockdown reduced cell growth and MYC expression in MYC-driven medulloblastoma cells.
- PRMT5 directly interacts with MYC and post-translationally regulates its stability.
- The PRMT5 inhibitor EPZ015666 suppressed cell growth, induced apoptosis, and downregulated PRMT5/MYC in MYC-driven medulloblastoma cells, demonstrating specific efficacy.
- EPZ015666 showed superior efficacy in MYC-amplified versus non-MYC-amplified medulloblastoma cells.
Conclusions:
- PRMT5 is a novel regulator of the MYC oncoprotein in medulloblastoma.
- Targeting PRMT5 represents a promising therapeutic strategy for MYC-driven medulloblastoma.
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