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Updated: Jan 24, 2026

Isolation of Cancer Stem Cells From Human Prostate Cancer Samples
Published on: March 14, 2014
High OGT activity is essential for MYC-driven proliferation of prostate cancer cells
Harri M Itkonen1,2, Alfonso Urbanucci1,3,4,5, Sara Es Martin2,6
1Centre for Molecular Medicine Norway (NCMM), Nordic EMBL Partnership, University of Oslo, Oslo, Norway.
Abstract:
O-GlcNAc transferase (OGT) is overexpressed in aggressive prostate cancer. OGT modifies intra-cellular proteins via single sugar conjugation (O-GlcNAcylation) to alter their activity. We recently discovered the first fast-acting OGT inhibitor OSMI-2. Here, we probe the stability and function of the chromatin O-GlcNAc and identify transcription factors that coordinate with OGT to promote proliferation of prostate cancer cells. Methods: Chromatin immunoprecipitation (ChIP) coupled to sequencing (seq), formaldehyde-assisted isolation of regulatory elements, RNA-seq and reverse-phase protein arrays (RPPA) were used to study the importance of OGT for chromatin structure and transcription. Mass spectrometry, western blot, RT-qPCR, cell cycle analysis and viability assays were used to establish the role of OGT for MYC-related processes. Prostate cancer patient data profiled for both mRNA and protein levels were used to validate findings. Results: We show for the first time that OGT inhibition leads to a rapid loss of O-GlcNAc chromatin mark. O-GlcNAc ChIP-seq regions overlap with super-enhancers (SE) and MYC binding sites. OGT inhibition leads to down-regulation of SE-dependent genes. We establish the first O-GlcNAc chromatin consensus motif, which we use as a bait for mass spectrometry. By combining the proteomic data from oligonucleotide enrichment with O-GlcNAc and MYC ChIP-mass spectrometry, we identify host cell factor 1 (HCF-1) as an interaction partner of MYC. Inhibition of OGT disrupts this interaction and compromises MYC's ability to confer androgen-independent proliferation to prostate cancer cells. We show that OGT is required for MYC-mediated stabilization of mitotic proteins, including Cyclin B1, and/or the increased translation of their coding transcripts. This implies that increased expression of mRNA is not always required to achieve increased protein expression and confer aggressive phenotype. Indeed, high expression of Cyclin B1 protein has strong predictive value in prostate cancer patients (p=0.000014) while mRNA does not. Conclusions: OGT promotes SE-dependent gene expression. OGT activity is required for the interaction between MYC and HCF-1 and expression of MYC-regulated mitotic proteins. These features render OGT essential for the androgen-independent, MYC-driven proliferation of prostate cancer cells. Androgen-independency is the major mechanism of prostate cancer progression, and our study identifies OGT as an essential mediator in this process.
Insights
O-GlcNAc transferase (OGT) drives aggressive prostate cancer by regulating MYC and mitotic proteins. Inhibiting OGT disrupts MYC-HCF-1 interaction, halting cancer cell proliferation and progression.
Area of Science:
- Biochemistry
- Molecular Biology
- Cancer Research
Background:
- O-GlcNAc transferase (OGT) is overexpressed in aggressive prostate cancer.
- OGT regulates protein activity through O-GlcNAcylation, impacting cellular processes.
- The OGT inhibitor OSMI-2 offers a potential therapeutic avenue.
Purpose of the Study:
- To investigate the role of OGT in prostate cancer cell proliferation.
- To identify factors coordinating with OGT in aggressive cancer.
- To probe the function and stability of chromatin O-GlcNAc.
Main Methods:
- Chromatin immunoprecipitation sequencing (ChIP-seq)
- RNA sequencing (RNA-seq)
- Mass spectrometry
- Western blot
- Prostate cancer patient data analysis
Main Results:
- OGT inhibition rapidly reduces chromatin O-GlcNAc marks.
- O-GlcNAc regions associate with super-enhancers and MYC binding sites.
- OGT inhibition disrupts the MYC-HCF-1 interaction, impairing proliferation.
- Cyclin B1 protein levels, not mRNA, predict prostate cancer progression.
Conclusions:
- OGT promotes super-enhancer-dependent gene expression in prostate cancer.
- OGT is essential for MYC-mediated mitotic protein expression and androgen-independent proliferation.
- OGT is a key mediator of prostate cancer progression via androgen-independency.
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