DNMT3B Knockdown Enhances PARP Inhibitor Sensitivity in Biliary Tract Cancer Cells via Opioid Growth Factor

Soichiro Oda1, Kazumichi Kawakubo1, Masaki Kuwatani1

  • 1Department of Gastroenterology and Hepatology, Hokkaido University Hospital, North 14, West 5, Kita-ku, Sapporo 060-8648, Japan.

Cancers
|December 30, 2025
PubMed

Insights

DNA methyltransferase (DNMT) inhibition with azacitidine sensitizes biliary tract cancer cells to PARP inhibitors by disrupting DNA repair. Opioid growth factor receptor (OGFR) was identified as a novel regulator of this enhanced sensitivity.

Area of Science:

  • Oncology
  • Molecular Biology
  • Epigenetics

Background:

  • Biliary tract cancer (BTC) is aggressive with limited treatment options.
  • PARP inhibitors are effective in HRR-deficient tumors, but BRCA1/2 mutations are rare in BTC.
  • DNMT inhibition is explored to induce 'BRCAness' and enhance PARP inhibitor efficacy.

Purpose of the Study:

  • To investigate if azacitidine (AZA) enhances niraparib (NIR) antitumor effects in BTC.
  • To elucidate the molecular mechanisms behind the AZA-NIR interaction.

Main Methods:

  • BTC cell lines (TFK-1, RBE) treated with AZA and/or NIR.
  • siRNA-mediated knockdown of DNMTs (DNMT1, DNMT3A, DNMT3B).
  • Functional assays (HR, cell cycle, apoptosis, proliferation, IC50), RNA sequencing, and whole-genome bisulfite sequencing.

Main Results:

  • AZA decreased HR frequency and sensitized BTC cells to NIR, increasing apoptosis and reducing IC50.
  • DNMT3B knockdown mimicked AZA effects, linking DNMT3B to HR repair disruption.
  • OGFR was upregulated upon DNMT3B knockdown, promoting NIR sensitivity and reduced HR activity.

Conclusions:

  • DNMT3B inhibition disrupts HR repair, sensitizing BTC cells to PARP inhibitors.
  • OGFR is a novel regulator of HR and PARP inhibitor sensitivity via noncanonical DNMT3B-dependent transcription.
  • Combination therapy of DNMT and PARP inhibitors is a promising strategy for BTC.

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