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March 8, 2026Molecular Cancer Therapeutics0 citations

Distinct H3K27 methylation states drive cellular responses to the histone demethylase inhibitor GSK-J4 in ovarian cancer cells

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MQMarcos Arias QuintelaLPLydia C. PowellABAgne Baseviciene

Key Points

  • The study aims to understand how different H3K27 methylation states influence cellular responses to the GSK-J4 inhibitor in ovarian cancer.
  • Used siRNA to knock down UTX and JMJD3 in ovarian cancer cell lines.
  • Applied GSK-J4 to pharmacologically inhibit histone demethylation.
  • Assessed cell proliferation, apoptosis, and 3D spheroid architecture.
  • Analyzed transcriptional changes in EMT and ECM-related genes.
  • GSK-J4 treatment led to reduced cell proliferation and increased apoptosis.
  • Alterations in 3D spheroid architectures were observed.
  • Downregulation of EMT- and ECM-associated genes was noted.
  • AR inhibition increased H3K27me2/3 levels in AR-expressing ovarian cancer cells.

Abstract

Abstract The deregulation of histone methylation has been implicated in the pathogenesis of multiple diseases, including ovarian cancer (OC), one of the most lethal gynaecological malignancies worldwide. The roles of the H3K27 demethylases UTX and JMJD3– key regulators of epigenetic homeostasis– remain incompletely characterised in OC. Here, we used the demethylase inhibitor GSK-J4 and siRNA-mediated knockdown of UTX and JMJD3 to investigate the functional impact of altered H3K27 methylation in OC in vitro models. Pharmacological modulation of H3K27me2/3 induced distinct cell type-specific phenotypes, including reduced proliferation, apoptosis and alterations in 3D spheroid architecture. These effects were accompanied by transcriptional downregulation of EMT- and ECM-associated genes. Notably, we identified the androgen receptor (AR) as a key upstream regulator of H3K27 methylation. In AR-expressing OC cells, AR inhibition increased H3K27me2/3 levels, revealing a novel epigenetic axis linking nuclear receptor signalling with histone methylation dynamics. Together, our findings uncover context-dependent vulnerabilities in OC cells and highlight a potential therapeutic interplay between AR signalling and epigenetic modulation.

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Cite This Study

Quintela et al. (2026) studied this question.

synapsesocial.com/papers/69ada885bc08abd80d5bb856https://doi.org/10.1158/1535-7163.mct-25-0268
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