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MYC-Mediated Inhibition of ARNT2 Uncovers a Key Tumor Suppressor in Glioblastoma
Abstract:
Tumor initiation and progression rely on intricate cellular pathways that promote proliferation while suppressing differentiation, yet the importance of pathways inhibiting differentiation in cancer remains incompletely understood. Here, we reveal a novel mechanism centered on the repression of the neuronal-specific transcription factor ARNT2 by the MYC oncogene that governs the balance between proliferation and differentiation. We found that MYC coordinates the transcriptional repression of ARNT2 through the activity of polycomb repressive complex 2 (PRC2). Notably, ARNT2, highly and specifically expressed in the central nervous system, is diminished in glioblastoma, inversely correlating with patient survival. Utilizing in vitro and in vivo models, we demonstrate that ARNT2 knockout (KO) exerts no discernible effect on the in vitro proliferation of glioblastoma cells, but significantly enhances the growth of glioblastoma cells in vivo. Conversely, ARNT2 overexpression severely dampens the growth of fully transformed glioblastoma cells subcutaneously or orthotopically xenografted in mice. Mechanistically, ARNT2 depletion diminishes differentiation and enhances stemness of glioblastoma cells. Our findings provide new insights into the complex mechanisms used by oncogenes to limit differentiation in cancer cells and define ARNT2 as a tumor suppressor in glioblastoma.
Insights
The MYC oncogene represses the neuronal factor ARNT2, impacting glioblastoma growth. Loss of ARNT2 enhances tumor growth in vivo, identifying it as a potential tumor suppressor in brain cancer.
Area of Science:
- Oncology
- Molecular Biology
- Neuroscience
Background:
- Tumorigenesis involves pathways balancing cell proliferation and differentiation.
- The role of differentiation-inhibiting pathways in cancer is not fully understood.
Purpose of the Study:
- To investigate the mechanism by which the MYC oncogene regulates differentiation.
- To determine the role of the neuronal transcription factor ARNT2 in glioblastoma.
Main Methods:
- Investigated MYC-mediated repression of ARNT2 using molecular biology techniques.
- Utilized in vitro and in vivo glioblastoma models (ARNT2 knockout and overexpression).
- Assessed glioblastoma cell proliferation, differentiation, and stemness.
Main Results:
- MYC represses ARNT2 transcription via Polycomb Repressive Complex 2 (PRC2).
- ARNT2 is downregulated in glioblastoma and correlates with poor survival.
- ARNT2 knockout enhances glioblastoma growth in vivo, while overexpression inhibits it.
- ARNT2 depletion reduces differentiation and increases stemness in glioblastoma cells.
Conclusions:
- ARNT2 acts as a tumor suppressor in glioblastoma.
- MYC utilizes ARNT2 repression to limit cancer cell differentiation.
- This study reveals a novel mechanism of oncogene-driven tumor progression.
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