Inhibition of USP14 promotes TNFα-induced cell death in head and neck squamous cell carcinoma (HNSCC)
Ethan L Morgan1,2, Tiffany Toni3,4, Ramya Viswanathan3
1Tumor Biology Section, Head and Neck Surgery Branch, National Institute on Deafness and Other Communication Disorders, National Institutes of Health, Bethesda, MD, USA. em715@sussex.ac.uk.
Abstract:
TNFα is a key mediator of immune, chemotherapy and radiotherapy-induced cytotoxicity, but several cancers, including head and neck squamous cell carcinomas (HNSCC), display resistance to TNFα due to activation of the canonical NFκB pro-survival pathway. However, direct targeting of this pathway is associated with significant toxicity; thus, it is vital to identify novel mechanism(s) contributing to NFκB activation and TNFα resistance in cancer cells. Here, we demonstrate that the expression of proteasome-associated deubiquitinase USP14 is significantly increased in HNSCC and correlates with worse progression free survival in Human Papillomavirus (HPV)- HNSCC. Inhibition or depletion of USP14 inhibited the proliferation and survival of HNSCC cells. Further, USP14 inhibition reduced both basal and TNFα-inducible NFκB activity, NFκB-dependent gene expression and the nuclear translocation of the NFκB subunit RELA. Mechanistically, USP14 bound to both RELA and IκBα and reduced IκBα K48-ubiquitination leading to the degradation of IκBα, a critical inhibitor of the canonical NFκB pathway. Furthermore, we demonstrated that b-AP15, an inhibitor of USP14 and UCHL5, sensitized HNSCC cells to TNFα-mediated cell death, as well as radiation-induced cell death in vitro. Finally, b-AP15 delayed tumor growth and enhanced survival, both as a monotherapy and in combination with radiation, in HNSCC tumor xenograft models in vivo, which could be significantly attenuated by TNFα depletion. These data offer new insights into the activation of NFκB signaling in HNSCC and demonstrate that small molecule inhibitors targeting the ubiquitin pathway warrant further investigation as a novel therapeutic avenue to sensitize these cancers to TNFα- and radiation-induced cytotoxicity.
Insights
Inhibition of USP14, a deubiquitinase, reduces NFκB activity and sensitizes head and neck cancers to TNFα and radiation therapy. Targeting USP14 offers a novel therapeutic strategy for HNSCC treatment.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Research
Background:
- Tumor necrosis factor-alpha (TNFα) induces cancer cell death but is often ineffective due to resistance mechanisms.
- Head and neck squamous cell carcinomas (HNSCC) resist TNFα via the pro-survival NFκB pathway.
- Targeting NFκB directly causes toxicity, necessitating alternative strategies.
Purpose of the Study:
- To investigate the role of USP14 in NFκB activation and TNFα resistance in HNSCC.
- To evaluate USP14 inhibition as a therapeutic strategy for HNSCC.
Main Methods:
- Assessed USP14 expression in HNSCC patient data.
- Inhibited or depleted USP14 in HNSCC cell lines.
- Measured NFκB activity, gene expression, and protein localization.
- Utilized b-AP15, a USP14 inhibitor, in vitro and in vivo HNSCC models.
- Examined combination therapy with radiation and TNFα depletion.
Main Results:
- USP14 expression is elevated in HNSCC and linked to poorer survival.
- USP14 inhibition reduced HNSCC proliferation, survival, and NFκB signaling.
- USP14 targets IκBα for degradation, promoting NFκB activation.
- b-AP15 sensitized HNSCC to TNFα and radiation-induced cell death.
- b-AP15 delayed tumor growth and improved survival in vivo, potentiated by TNFα.
Conclusions:
- USP14 is a key driver of NFκB activation and TNFα resistance in HNSCC.
- Inhibiting USP14 resensitizes HNSCC to TNFα and radiation therapy.
- USP14 inhibitors represent a promising therapeutic avenue for HNSCC.
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