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Updated: May 26, 2025

A High Resolution Method to Monitor Phosphorylation-dependent Activation of IRF3
Published on: January 24, 2016
Irf7 aggravates prostatitis by promoting Hif-1α-mediated glycolysis to facilitate M1 polarization
Tong Meng1,2, Yi Zhang1,2, Huihui Wang1,2
1Department of Urology, Institute of Urology, Anhui Province Key Laboratory of Urological and Andrological Diseases Research and Medical Transformation, The First Affiliated Hospital of Anhui Medical University, Anhui Medical University, No. 218 Jixi Road, Shushan District, Hefei, Anhui Province, 230022, People's Republic of China.
Background:
Chronic prostatitis/chronic pelvic pain syndrome (CP/CPPS) is a common disorder associated with voiding symptoms and pain in the pelvic or perineal area. Macrophages, particularly the pro-inflammatory M1 subtype, are crucial initiating of CP/CPPS. Interferon regulatory factor 7 (Irf7) has been implicated in promoting M1 polarization, contributing to the onset and progression of autoimmunity. However, the role of Irf7 in the etiology and progression of CP/CPPS remains unclear.
Method:
We established the experimental autoimmune prostatitis (EAP) mouse model by subcutaneous injection of prostate antigen combined with complete Freund's adjuvant. Six weeks after the first immunization, we analyzed the prostates, spleen, and blood to assess the degree of prostate inflammation, Irf7 expression levels, glycolysis, and M1 polarization to evaluate whether Irf7 could exacerbate the development of EAP by enhancing Hif-1α transcription, thereby increasing glycolysis and M1 polarization. Further investigations included sh-Irf7 intervention, Dimethyloxalylglycine (a Hif-1α agonist), and in vitro M1 polarization experiments. We also employed ChIP assays, dual-luciferase reporter assays, and q-PCR to explore if Irf7 could directly interact with the Hif-1α promoter in macrophages.
Results:
In the EAP mouse and cell models, elevated Irf7 expression was observed in inflamed tissues and cells. Reducing Irf7 expression decreased M1 cell glycolysis by inhibiting the nuclear translocation of Hif-1α, thus mitigating M1 cell polarization. Additionally, Irf7 was identified as a transcription factor that regulates Hif-1α transcription by interacting with its promoter in macrophages, confirmed through ChIP and dual-luciferase assays. Co-culturing macrophage cells with 3T3 fibroblasts with reduced Irf7 levels resulted in decreased fibrosis, and a significant reduction in prostate tissue fibrosis was noted in mice with Irf7 knockdown.
Conclusion:
Our findings indicate that Irf7 can contribute to the development and progression of CP/CPPS by promoting glycolysis, which can enhance both M1 polarization as well as interstitial fibrosis in the prostate. This process was found to be mediated by the upregulation of Hif-1α transcription, presenting new potential therapeutic targets for managing CP/CPPS.
Insights
Interferon regulatory factor 7 (Irf7) drives chronic prostatitis/chronic pelvic pain syndrome (CP/CPPS) by increasing M1 macrophage polarization and prostate fibrosis. Targeting Irf7 may offer new therapeutic strategies for CP/CPPS.
Area of Science:
- Immunology
- Urology
- Molecular Biology
Background:
- Chronic prostatitis/chronic pelvic pain syndrome (CP/CPPS) is a prevalent condition characterized by pelvic pain and voiding dysfunction.
- Pro-inflammatory M1 macrophages play a key role in initiating CP/CPPS.
- Interferon regulatory factor 7 (Irf7) is known to promote M1 polarization in autoimmune conditions, but its role in CP/CPPS is not well understood.
Purpose of the Study:
- To investigate the role of Irf7 in the development and progression of experimental autoimmune prostatitis (EAP), a model for CP/CPPS.
- To determine if Irf7 exacerbates EAP by enhancing glycolysis and M1 polarization via Hif-1α.
- To explore Irf7 as a potential therapeutic target for CP/CPPS.
Main Methods:
- Established an experimental autoimmune prostatitis (EAP) mouse model.
- Analyzed prostate inflammation, Irf7 expression, glycolysis, and M1 polarization.
- Utilized sh-Irf7 intervention, Hif-1α agonist, and in vitro M1 polarization assays.
- Employed ChIP and dual-luciferase reporter assays to investigate Irf7-Hif-1α promoter interaction.
Main Results:
- Elevated Irf7 expression was observed in EAP models.
- Reducing Irf7 decreased M1 cell glycolysis and M1 polarization by inhibiting Hif-1α nuclear translocation.
- Irf7 directly interacts with the Hif-1α promoter in macrophages.
- Irf7 knockdown reduced prostate tissue fibrosis.
Conclusions:
- Irf7 promotes CP/CPPS development and progression by enhancing M1 polarization and prostate fibrosis.
- This is mediated by Irf7-induced upregulation of Hif-1α transcription and subsequent increase in glycolysis.
- Targeting Irf7 presents a novel therapeutic strategy for CP/CPPS.
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