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Updated: Apr 11, 2026

Live-Cell Imaging Assays to Study Glioblastoma Brain Tumor Stem Cell Migration and Invasion
Published on: August 29, 2018
USP1 targeting impedes GBM growth by inhibiting stem cell maintenance and radioresistance
Jin-Ku Lee1, Nakho Chang1, Yeup Yoon1
1Department of Neurosurgery, Samsung Medical Center and Samsung Biomedical Research Institute, Seoul, Korea (J.-K.L., Y.Y., H.Y., W.K., D.-H.N.); Graduate School of Health Science & Technology, Samsung Advanced Institute for Health Science & Technology, Sungkyunkwan University, Seoul, Korea (N.C., H.C., Y.T.O., Y.Y., D.-H.N.); Department of Anatomy and Cell Biology, Sungkyunkwan University School of Medicine, Seoul, Korea (K.M.J.); Department of Stem Cell Biology and Regenerative Medicine, Lerner Research Institute, Cleveland Clinic, Cleveland, Ohio (E.K., Y.S., G.I.M., J.L.).
Background:
Clinical benefits from standard therapies against glioblastoma (GBM) are limited in part due to intrinsic radio- and chemoresistance of GBM and inefficient targeting of GBM stem-like cells (GSCs). Novel therapeutic approaches that overcome treatment resistance and diminish stem-like properties of GBM are needed.
Methods:
We determined the expression levels of ubiquitination-specific proteases (USPs) by transcriptome analysis and found that USP1 is highly expressed in GBM. Using the patient GBM-derived primary tumor cells, we inhibited USP1 by shRNA-mediated knockdown or its specific inhibitor pimozide and evaluated the effects on stem cell marker expression, proliferation, and clonogenic growth of tumor cells.
Results:
USP1 was highly expressed in gliomas relative to normal brain tissues and more preferentially in GSC enrichment marker (CD133 or CD15) positive cells. USP1 positively regulated the protein stability of the ID1 and CHEK1, critical regulators of DNA damage response and stem cell maintenance. Targeting USP1 by RNA interference or treatment with a chemical USP1 inhibitor attenuated clonogenic growth and survival of GSCs and enhanced radiosensitivity of GBM cells. Finally, USP1 inhibition alone or in combination with radiation significantly prolonged the survival of tumor-bearing mice.
Conclusion:
USP1-mediated protein stabilization promotes GSC maintenance and treatment resistance, thereby providing a rationale for USP1 inhibition as a potential therapeutic approach against GBM.
Insights
Targeting USP1 (ubiquitination-specific protease 1) in glioblastoma (GBM) overcomes treatment resistance and stem-like properties. Inhibiting USP1 enhances radiosensitivity and prolongs survival in mice, offering a new therapeutic strategy.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Stem Cell Research
Background:
- Glioblastoma (GBM) treatment faces challenges due to radio/chemoresistance and targeting of GBM stem-like cells (GSCs).
- Novel therapies are crucial to overcome resistance and reduce stem-like properties in GBM.
Purpose of the Study:
- To investigate the role of ubiquitination-specific proteases (USPs) in GBM.
- To evaluate USP1 as a potential therapeutic target for GBM treatment.
Main Methods:
- Transcriptome analysis to determine USP expression levels in GBM.
- Inhibition of USP1 using shRNA or the specific inhibitor pimozide in patient-derived GBM cells.
- Assessment of effects on stem cell markers, proliferation, and clonogenic growth.
Main Results:
- USP1 is highly expressed in gliomas, particularly in CD133/CD15 positive GSCs.
- USP1 stabilizes ID1 and CHEK1, regulators of DNA damage response and stem cell maintenance.
- USP1 inhibition reduced GSC growth and survival, enhanced GBM radiosensitivity, and prolonged survival in mice.
Conclusions:
- USP1 promotes GSC maintenance and treatment resistance through protein stabilization.
- USP1 inhibition presents a promising therapeutic strategy for glioblastoma.
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