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Updated: Jan 7, 2026

Phospholipid Mediator Induced Transformation in Three-Dimensional Cultures
Published on: July 27, 2022
PARP7 and aryl hydrocarbon receptor differentially regulate mammary cancer cell proliferation and STING-induced type
Ninni E Olafsen1, Samaneh S Åhrling1, Marit Rasmussen1
1Department of Nutrition, Institute of Basic Medical Sciences, Faculty of Medicine, University of Oslo, Oslo, Norway.
Purpose:
PARP7 is a negative regulator of type I interferon (IFN-I) and aryl hydrocarbon receptor (AHR) signalling and has important roles in cell proliferation and antitumor immunity. Recently, several cancer cell lines have been reported to be sensitive to the antiproliferative effect of PARP7 inhibition by RBN2397; however, the roles of AHR and IFN-I signalling in this effect are not fully understood.
Methods:
Murine mammary cancer cells were treated with AHR ligands, RBN2397 and with the stimulator of interferon genes (STING) agonist, DMXAA. The impact of ligand treatments on AHR and IFN-I signalling and cell proliferation was determined.
Results:
RBN2397 enhanced AHR ligand signalling and STING-induced IFN-I responses in both cell lines. Py8119 but not Py230, 4T1 or EO771 cells were sensitive to the antiproliferative effects of RBN2397. In agreement with FOS-related antigen 1 (FOSL1) being required for sensitivity to RBN2397, Py8119 but not Py230 cells expressed FOSL1. However, RBN2397 insensitive 4T1 and EO771 cell lines also expressed FOSL1, suggesting that the role of FOSL1 in RBN2397-mediated growth inhibition exhibits cell line specificity. In Py8119 cells, RBN2397 induced apoptosis which was independent of AHR ligand treatment and DMXAA-induced STING activation. Although Py230 cells were resistant to the antiproliferative effects RBN2397 alone, combined treatment of DMXAA with RBN2397 reduced their proliferation, which was further reduced by AHR loss or its inhibition.
Conclusion:
These findings highlight the complexity of the interplay among PARP7, AHR and STING-induced IFN signalling in regulating cancer cell proliferation but also suggest that for some cell lines STING activation might increase their sensitivity to the anti-proliferative effects of RBN2397.
Insights
PARP7 inhibition by RBN2397 affects cancer cell proliferation by modulating aryl hydrocarbon receptor (AHR) and type I interferon (IFN-I) signaling. STING activation may enhance RBN2397 sensitivity in certain cancer cell lines.
Area of Science:
- Oncology
- Immunology
- Molecular Biology
Background:
- Poly(ADP-ribose) polymerase 7 (PARP7) negatively regulates type I interferon (IFN-I) and aryl hydrocarbon receptor (AHR) signaling pathways.
- PARP7 plays a role in cell proliferation and antitumor immunity.
- The antiproliferative effects of PARP7 inhibition by RBN2397 are observed in several cancer cell lines, but the roles of AHR and IFN-I signaling are not fully understood.
Purpose of the Study:
- To investigate the impact of RBN2397 on AHR and IFN-I signaling in murine mammary cancer cells.
- To determine the role of AHR and IFN-I signaling in the antiproliferative effects of PARP7 inhibition.
- To explore the cell line specificity of RBN2397's antiproliferative effects.
Main Methods:
- Murine mammary cancer cells were treated with AHR ligands, RBN2397, and the stimulator of interferon genes (STING) agonist DMXAA.
- The study assessed the effects of these treatments on AHR and IFN-I signaling pathways.
- Cell proliferation was measured to evaluate the antiproliferative impact of the treatments.
Main Results:
- RBN2397 treatment enhanced AHR ligand signaling and STING-induced IFN-I responses.
- Only Py8119 cells exhibited sensitivity to RBN2397's antiproliferative effects, correlating with FOS-related antigen 1 (FOSL1) expression.
- Combined treatment with DMXAA and RBN2397 reduced proliferation in resistant Py230 cells, an effect further enhanced by AHR inhibition.
Conclusions:
- The interplay between PARP7, AHR, and STING-induced IFN signaling is complex in regulating cancer cell proliferation.
- STING activation may enhance the sensitivity of certain cancer cell lines to the antiproliferative effects of RBN2397.
- FOSL1's role in RBN2397-mediated growth inhibition is cell line-specific.
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