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A High Resolution Method to Monitor Phosphorylation-dependent Activation of IRF3
Published on: January 24, 2016
Data supporting the roles of BAP1, STING, and IFN-β in ISGF3 activation in ccRCC
Lauren E Langbein1, Eleonora Sementino2, Zhijiu Zhong3
1Department of Pathology, Anatomy, & Cell Biology, Thomas Jefferson University, Philadelphia, PA, United States.
Abstract:
The data presented in this article are companion materials to our manuscript titled "BAP1 maintains HIF-dependent interferon beta induction to suppress tumor growth in clear cell renal cell carcinoma" (Langbein et al., 2022), where we investigated the downstream effects of BAP1 (BRCA1-associated protein 1) expression in clear cell renal cell carcinoma (ccRCC) cell lines and mouse xenograft models. In the manuscript, we showed that BAP1 upregulates STING (stimulator of interferon genes) expression and activity in ccRCC cells, leading to IFN-β transcription and activation of interferon stimulated gene factor 3 (ISGF3), the transcription factor that mediates the effects of type I interferons (IFNs). Here, we suppressed additional components of the type I IFN pathway, including IRF9 (a component of ISGF3), IFNAR1 (the type I IFN receptor), and STING (a stimulator of IFN production) by shRNA to investigate their involvement in BAP1-mediated upregulation of ISGF3 activity. We also inhibited extracellular IFN-β via neutralizing antibody treatment in BAP1-expressing cells to ascertain the role of the secreted cytokine in this pathway. ISGF3 activity was assessed by western blot analysis and qPCR measurement of its transcriptional targets. To examine the relevance of our observations in another model system, we characterized primary kidney cells from WT and Bap1 fl/fl mice by cytokeratin 8 immunohistochemistry and examined the effect of Bap1 knockout on Sting protein expression. Finally, we treated mice bearing BAP1 knockdown xenografted tumors with diABZI, a STING agonist, and measured immune cell recruitment via CD45 immunohistochemistry. These data can serve as a starting point for further investigation on the roles of BAP1 and other tumor suppressor genes in interferon pathway regulation.
Insights
BRCA1-associated protein 1 (BAP1) maintains interferon beta induction to suppress clear cell renal cell carcinoma (ccRCC) tumor growth. BAP1 enhances the STING-IFN pathway, crucial for anti-tumor immunity in ccRCC.
Area of Science:
- Oncology
- Immunology
- Molecular Biology
Background:
- Clear cell renal cell carcinoma (ccRCC) is a significant malignancy.
- BRCA1-associated protein 1 (BAP1) is a tumor suppressor.
- The type I interferon (IFN) pathway plays a role in anti-tumor immunity.
Purpose of the Study:
- To investigate the role of BAP1 in regulating the type I IFN pathway in ccRCC.
- To elucidate the downstream effects of BAP1 expression on interferon signaling.
- To assess the therapeutic potential of targeting the BAP1-STING-IFN axis in ccRCC.
Main Methods:
- Utilized shRNA to suppress key components of the type I IFN pathway (IRF9, IFNAR1, STING).
- Employed neutralizing antibodies to inhibit extracellular IFN-β.
- Assessed ISGF3 activity via Western blot and qPCR.
- Characterized primary kidney cells from WT and Bap1 knockout mice.
- Administered STING agonist (diABZI) to mice with BAP1-knockdown xenografts and analyzed immune cell infiltration.
Main Results:
- BAP1 upregulates STING expression and activity, leading to IFN-β production and ISGF3 activation in ccRCC cells.
- Suppression of STING, IRF9, or IFNAR1 diminishes BAP1-mediated ISGF3 activity.
- Inhibition of extracellular IFN-β affects the pathway.
- Bap1 knockout in primary kidney cells impacts Sting protein expression.
- STING agonist treatment in vivo enhances immune cell recruitment in BAP1-knockdown tumors.
Conclusions:
- BAP1 is a critical regulator of the STING-IFN pathway in ccRCC.
- BAP1-mediated interferon induction is essential for suppressing tumor growth.
- Targeting the BAP1-STING-IFN axis represents a potential therapeutic strategy for ccRCC.
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