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Constitutive NF-kB Activation Is Amplified by VSV in Aggressive PC3 Prostate Cancer Cells That Resist Viral Oncolysis
Alaa A Abdelmageed1,2, Jack F Smerczynski3, Mukul Kandwal3
1Biomedical Genetics and Genomics Program, University of Rochester School of Medicine and Dentistry, Rochester, NY 14642, USA.
Abstract:
Cancer cells often have defects in antiviral pathways, making them susceptible to oncolytic viruses like vesicular stomatitis virus (VSV). However, some cancer cells resist viral infection through the constitutive expression of interferon-stimulated genes. This study examined whether NF-κB activation and NF-κB-dependent antiviral signaling contribute to resistance to VSV infection in the PC3 cell line, derived from an aggressive metastatic prostate cancer (PrCa) tumor. We found that NF-κB localized to the nucleus in VSV-infected PC3 cells, but not in the VSV-susceptible LNCaP PrCa cell line. Analysis of the upstream NF-κB inhibitor IκB-α revealed higher levels of both total and phosphorylated IκB-α in PC3 cells compared to LNCaP cells, indicating constitutive activation of the NF-κB pathway via an IκB-α-dependent mechanism. Notably, VSV infection did not alter IκB-α phosphorylation in PC3 cells, suggesting that VSV may amplify NF-κB signaling through an IκB-α-independent pathway. Furthermore, PC3 cells displayed elevated levels of the NF-κB p65 protein subunit compared to LNCaP cells, with its phosphorylated form significantly increased upon VSV infection. These results from phosphorylation assays confirm that multiple steps in the NF-κB pathway are differentially activated in PC3 and LNCaP cells. Finally, the expression of several NF-κB-dependent cytokines and proinflammatory genes, including IL12 and IL6, was upregulated following VSV infection in PC3 cells, as compared to LNCaP cells. Collectively, these findings suggest that enhanced NF-κB signaling may underlie the resistance of PC3 cells to VSV oncolysis, potentially offering new insights into therapeutic strategies targeting NF-κB in resistant prostate cancers.
Insights
Aggressive prostate cancer cells (PC3) resist oncolytic virus (VSV) infection due to enhanced nuclear factor kappa B (NF-κB) signaling. This pathway activation, involving IκB-α and p65, may explain VSV resistance and inform new prostate cancer therapies.
Area of Science:
- Oncology
- Virology
- Immunology
Background:
- Cancer cells often exhibit defects in antiviral pathways, increasing susceptibility to oncolytic viruses.
- However, constitutive expression of interferon-stimulated genes can confer resistance to viral infection in some cancer cells.
Purpose of the Study:
- To investigate the role of nuclear factor kappa B (NF-κB) activation and NF-κB-dependent signaling in resistance to vesicular stomatitis virus (VSV) infection in aggressive metastatic prostate cancer (PC3) cells.
Main Methods:
- Comparative analysis of NF-κB pathway activation in PC3 and LNCaP prostate cancer cell lines upon VSV infection.
- Assessment of NF-κB localization, IκB-α levels (total and phosphorylated), and p65 subunit expression and phosphorylation.
- Quantification of NF-κB-dependent cytokine and gene expression (IL12, IL6) post-VSV infection.
Main Results:
- NF-κB localized to the nucleus in VSV-infected PC3 cells, unlike in VSV-susceptible LNCaP cells.
- PC3 cells showed constitutive IκB-α activation and elevated p65 levels, with increased p65 phosphorylation upon VSV infection.
- VSV infection upregulated NF-κB-dependent genes (IL12, IL6) in PC3 cells more than in LNCaP cells.
Conclusions:
- Enhanced NF-κB signaling, particularly involving IκB-α and p65, contributes to PC3 cell resistance to VSV oncolysis.
- These findings suggest NF-κB as a potential therapeutic target for overcoming resistance in aggressive prostate cancers.
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