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Updated: Nov 20, 2025

Co-culture of Glioblastoma Stem-like Cells on Patterned Neurons to Study Migration and Cellular Interactions
Published on: February 24, 2021
Modulation of Nogo receptor 1 expression orchestrates myelin-associated infiltration of glioblastoma
Jun-Hee Hong1,2, Sangjo Kang2, Jason K Sa3
1Department of Cancer Biomedical Science, Graduate School of Cancer Science and Policy, National Cancer Center, Goyang, Korea.
Abstract:
As the clinical failure of glioblastoma treatment is attributed by multiple components, including myelin-associated infiltration, assessment of the molecular mechanisms underlying such process and identification of the infiltrating cells have been the primary objectives in glioblastoma research. Here, we adopted radiogenomic analysis to screen for functionally relevant genes that orchestrate the process of glioma cell infiltration through myelin and promote glioblastoma aggressiveness. The receptor of the Nogo ligand (NgR1) was selected as the top candidate through Differentially Expressed Genes (DEG) and Gene Ontology (GO) enrichment analysis. Gain and loss of function studies on NgR1 elucidated its underlying molecular importance in suppressing myelin-associated infiltration in vitro and in vivo. The migratory ability of glioblastoma cells on myelin is reversibly modulated by NgR1 during differentiation and dedifferentiation process through deubiquitinating activity of USP1, which inhibits the degradation of ID1 to downregulate NgR1 expression. Furthermore, pimozide, a well-known antipsychotic drug, upregulates NgR1 by post-translational targeting of USP1, which sensitizes glioma stem cells to myelin inhibition and suppresses myelin-associated infiltration in vivo. In primary human glioblastoma, downregulation of NgR1 expression is associated with highly infiltrative characteristics and poor survival. Together, our findings reveal that loss of NgR1 drives myelin-associated infiltration of glioblastoma and suggest that novel therapeutic strategies aimed at reactivating expression of NgR1 will improve the clinical outcome of glioblastoma patients.
Insights
Loss of Nogo receptor 1 (NgR1) drives glioblastoma infiltration through myelin. Reactivating NgR1 expression, potentially with pimozide, may improve treatment outcomes for glioblastoma patients.
Area of Science:
- Neuro-oncology
- Molecular Biology
- Genomics
Background:
- Glioblastoma treatment failure is linked to myelin-associated infiltration.
- Understanding molecular mechanisms of glioma cell infiltration is crucial for glioblastoma research.
Purpose of the Study:
- To identify genes regulating glioma cell infiltration through myelin and glioblastoma aggressiveness using radiogenomic analysis.
- To investigate the role of the Nogo ligand receptor 1 (NgR1) in myelin-associated infiltration.
Main Methods:
- Radiogenomic analysis, including Differentially Expressed Genes (DEG) and Gene Ontology (GO) enrichment.
- In vitro and in vivo gain and loss of function studies on NgR1.
- Analysis of USP1, ID1, and pimozide in modulating NgR1 expression and glioblastoma cell migration.
Main Results:
- Nogo ligand receptor 1 (NgR1) was identified as a key regulator suppressing myelin-associated infiltration.
- NgR1's function is modulated by USP1 deubiquitinating activity, affecting ID1 degradation and NgR1 expression.
- Pimozide upregulates NgR1 by targeting USP1, enhancing glioma stem cell sensitivity to myelin inhibition and reducing infiltration.
- Downregulation of NgR1 in human glioblastoma correlates with increased infiltration and poorer survival.
Conclusions:
- Loss of NgR1 promotes myelin-associated infiltration in glioblastoma.
- Reactivating NgR1 expression represents a potential therapeutic strategy to improve glioblastoma patient outcomes.

