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Published on: December 19, 2019
Deletion of p53-Related Protein Kinase Suppresses Solar UV-Induced Photocarcinogenesis by Inhibiting PD-L1 Expression
Qiushi Wang1, Eunmiri Roh2, Asad Khan1
1The Hormel Institute, University of Minnesota, Austin, Minnesota, USA.
Abstract:
Nonmelanoma skin cancers are primarily caused by solar UV exposure and represent the most common cancers in the United States. PRPK (p53-related protein kinase) is a protein kinase that is involved in multiple cancers, including colon cancer, myeloma, and hepatocellular carcinoma. In this study, we generated epidermal-specific PRPK-knockout mice using CRISPR/Cas9 technology in SKH1 hairless mice with loxP-flanked PRPK alleles, crossed with keratin 14-Cre (K14.Cre) mice. Our findings reveal that epidermal-specific deletion of PRPK significantly suppresses tumor growth in solar-simulated light-induced nonmelanoma skin cancer. Knocking down PRPK significantly suppresses cutaneous squamous cell carcinoma cell growth by inducing G1 phase arrest and promoting apoptosis. Mechanistically, PRPK deletion inhibits proliferating cell nuclear antigen and PD-L1 expression as well as the expression of transcription factors c-Myc, c-Jun, NF-κB, and activator protein-1, which mediate PD-L1 expression. Using a 3-dimensional culture system, we further demonstrate that PRPK deletion suppresses cutaneous squamous cell carcinoma cell growth. Flow cytometry analysis indicates that PRPK deletion enhances CD8 T-cell infiltration. This is accompanied by significant reductions in IL-6, MIP-2, and VEGF levels, reprogramming the tumor microenvironment to support CD8 T-cell infiltration. In summary, our study demonstrates that PRPK deletion suppresses solar UV-induced photocarcinogenesis by inhibiting PD-L1 expression and enhancing CD8 T-cell infiltration, highlighting its potential as a therapeutic target for nonmelanoma skin cancer.
Insights
Deleting p53-related protein kinase (PRPK) in skin cells suppresses nonmelanoma skin cancer growth. This approach inhibits tumor progression and enhances immune cell activity, offering a potential new therapy for skin cancer.
Area of Science:
- Oncology
- Immunology
- Dermatology
Background:
- Nonmelanoma skin cancers (NMSCs) are the most common cancers in the US, primarily caused by solar ultraviolet (UV) radiation.
- p53-related protein kinase (PRPK) is implicated in various cancers, but its role in skin carcinogenesis is not well understood.
Purpose of the Study:
- To investigate the role of PRPK in solar UV-induced skin cancer.
- To evaluate the therapeutic potential of targeting PRPK in NMSC.
Main Methods:
- Generated epidermal-specific PRPK knockout mice using CRISPR/Cas9 and K14.Cre technology.
- Induced NMSC using solar-simulated light (SSL) exposure.
- Assessed tumor growth, cell cycle, apoptosis, protein/gene expression, and immune cell infiltration.
Main Results:
- Epidermal-specific PRPK deletion significantly suppressed SSL-induced NMSC growth.
- PRPK knockdown induced G1 phase arrest and apoptosis in cSCC cells.
- PRPK deletion inhibited PCNA and PD-L1 expression, along with key transcription factors (c-Myc, c-Jun, NF-κB, AP-1).
- PRPK deletion enhanced CD8 T cell infiltration by reducing IL-6, MIP-2, and VEGF levels.
Conclusions:
- PRPK plays a crucial role in solar UV-induced skin carcinogenesis.
- Targeting PRPK suppresses NMSC progression by inhibiting PD-L1 expression and modulating the tumor microenvironment.
- PRPK is a potential therapeutic target for NMSC treatment.
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