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Intramucosal Inoculation of Squamous Cell Carcinoma Cells in Mice for Tumor Immune Profiling and Treatment Response Assessment
Published on: April 22, 2019
Targeting NAT10 Activates Tumor-Intrinsic Immunity and Suppresses Tumor Progression in Head and Neck Squamous Cell
Thurbu Tshering Lepcha1, Nithya Paruchuri2, Dawei Zhou1
1Department of Pathology, College of Medicine, The Ohio State University, Columbus, OH 43210, USA.
Abstract:
Head and neck squamous cell carcinoma (HNSCC) remain a major clinical challenge due to its high heterogeneity and limited therapeutic response, resulting in a 5-year overall survival rate of only ~50%. Identifying molecular pathways that drive tumor progression while suppressing anti-tumor immunity is therefore critical for developing more effective therapies. N-acetyltransferase 10 (NAT10) is the only known enzyme responsible for catalyzing the RNA modification N4-acetylcytidine (ac4C) on rRNA, tRNA, and mRNA, and has been implicated in tumor progression in several cancers. In this study, we identify NAT10 as a key suppressor of tumor-intrinsic immune signaling in HNSCC. NAT10 expression was significantly elevated in tumor tissues and HNSCC cell lines and was associated with poor overall survival. Moreover, high-risk HPV, a major etiological factor in HNSCC, upregulated NAT10 protein expression through the viral oncoproteins E6 and E7. Functional inhibition of NAT10, either by genetic depletion or the small-molecule inhibitor Remodelin, activated tumor-intrinsic innate immune responses, as evidenced by increased IRF3 phosphorylation and induction of type I/II interferons and interferon-stimulated genes. Depletion of NAT10 was able to suppress tumorigenic phenotypes, including cell proliferation, migration, and colony formation in HNSCC cells. Importantly, activation of the STING signaling pathway using agonist cyclic di-GMP further amplified immune activation in NAT10-inhibited cancer cells. Together, our findings establish NAT10 as a previously unrecognized negative regulator of tumor-intrinsic immunity in HNSCC and support NAT10 targeting, particularly in combination with STING agonists, as a promising immunotherapeutic strategy.
Insights
NAT10 (N-acetyltransferase 10) suppresses anti-tumor immunity in head and neck squamous cell carcinoma (HNSCC). Inhibiting NAT10 boosts immune responses and reduces tumor growth, suggesting NAT10 targeting as a potential HNSCC immunotherapy.
Area of Science:
- Oncology
- Immunology
- Molecular Biology
Background:
- Head and neck squamous cell carcinoma (HNSCC) presents a significant clinical challenge with poor survival rates due to tumor heterogeneity and limited treatment efficacy.
- Understanding molecular drivers of HNSCC progression and immune evasion is crucial for developing novel therapeutic strategies.
- NAT10 (N-acetyltransferase 10), an enzyme catalyzing N4-acetylcytidine (ac4C) RNA modification, is implicated in various cancers.
Purpose of the Study:
- To investigate the role of NAT10 in regulating tumor-intrinsic immune signaling within HNSCC.
- To explore the potential of targeting NAT10 as an immunotherapeutic approach for HNSCC.
Main Methods:
- Analysis of NAT10 expression in HNSCC tissues and cell lines.
- Investigating the effect of NAT10 inhibition (genetic depletion or Remodelin) on innate immune responses (IRF3 phosphorylation, interferon induction).
- Assessing the impact of NAT10 depletion on HNSCC cell tumorigenic phenotypes and evaluating combination therapy with STING agonists.
Main Results:
- NAT10 expression is elevated in HNSCC and correlates with poor survival.
- High-risk HPV oncoproteins E6/E7 upregulate NAT10 protein levels.
- NAT10 inhibition activates innate immunity, suppresses proliferation, migration, and colony formation in HNSCC cells.
- Combined NAT10 inhibition and STING pathway activation synergistically enhance anti-tumor immune responses.
Conclusions:
- NAT10 acts as a key suppressor of tumor-intrinsic immunity in HNSCC.
- Targeting NAT10, especially in conjunction with STING agonists, represents a promising immunotherapeutic strategy for HNSCC.
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