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HPV E6 regulates therapy responses in oropharyngeal cancer by repressing the PGC-1α/ERRα axis
Malay K. Sannigrahi, Pavithra Rajagopalan, Ling Lai, Xinyi Liu, Varun Sahu, Hiroshi Nakagawa, Jalal B. Jalaly, Robert M. Brody, Iain M. Morgan, Bradford E. Windle, Xiaowei Wang, Phyllis A. Gimotty, Daniel P. Kelly, Elizabeth A. White, Devraj Basu
Malay K. Sannigrahi, Pavithra Rajagopalan, Ling Lai, Xinyi Liu, Varun Sahu, Hiroshi Nakagawa, Jalal B. Jalaly, Robert M. Brody, Iain M. Morgan, Bradford E. Windle, Xiaowei Wang, Phyllis A. Gimotty, Daniel P. Kelly, Elizabeth A. White, Devraj Basu
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Research Article Oncology Therapeutics

HPV E6 regulates therapy responses in oropharyngeal cancer by repressing the PGC-1α/ERRα axis

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Abstract

Therapy with radiation plus cisplatin kills HPV+ oropharyngeal squamous cell carcinomas (OPSCCs) by increasing reactive oxygen species beyond cellular antioxidant capacity. To explore why these standard treatments fail for some patients, we evaluated whether the variation in HPV oncoprotein levels among HPV+ OPSCCs affects mitochondrial metabolism, a source of antioxidant capacity. In cell line and patient-derived xenograft models, levels of HPV full-length E6 (fl-E6) inversely correlated with oxidative phosphorylation, antioxidant capacity, and therapy resistance, and fl-E6 was the only HPV oncoprotein to display such correlations. Ectopically expressing fl-E6 in models with low baseline levels reduced mitochondrial mass, depleted antioxidant capacity, and sensitized to therapy. In this setting, fl-E6 repressed the peroxisome proliferator–activated receptor gamma co-activator 1α/estrogen-related receptor α (PGC-1α/ERRα) pathway for mitochondrial biogenesis by reducing p53-dependent PGC-1α transcription. Concordant observations were made in 3 clinical cohorts, where expression of mitochondrial components was higher in tumors of patients with reduced survival. These tumors contained the lowest fl-E6 levels, the highest p53 target gene expression, and an activated PGC-1α/ERRα pathway. Our findings demonstrate that E6 can potentiate treatment responses by depleting mitochondrial antioxidant capacity and provide evidence for low E6 negatively affecting patient survival. E6’s interaction with the PGC-1α/ERRα axis has implications for predicting and targeting treatment resistance in OPSCC.

Authors

Malay K. Sannigrahi, Pavithra Rajagopalan, Ling Lai, Xinyi Liu, Varun Sahu, Hiroshi Nakagawa, Jalal B. Jalaly, Robert M. Brody, Iain M. Morgan, Bradford E. Windle, Xiaowei Wang, Phyllis A. Gimotty, Daniel P. Kelly, Elizabeth A. White, Devraj Basu

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Figure 4

Increasing fl-E6 levels represses mitochondrial biogenesis and antioxidant capacity.

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Increasing fl-E6 levels represses mitochondrial biogenesis and antioxida...
(A) Western blot of parental cells, 3 lentiviral fl-E6 transduced clones, and 3 vector control clones showing levels of HA-tagged E6, p53, and 5 electron transport chain components (top) and their densitometric quantification (bottom). Adjusted P values were calculated using a 1-way ANOVA with Holm-Šidák multiple comparisons procedure. The effect of lentiviral fl-E6 expression is shown for (B) mitochondrial mass (MT-CO1/B2M ratio by DNA qPCR), (C) basal OCR (Seahorse assay), and (D) antioxidant capacity (NADPH/NADP+ by enzyme cycling-based colorimetric assay). Super-plots display mean ± SEM of 3 technical replicates for each of 3 biologic replicates. Different colors represent biologic replicates. Light colors represent technical replicate values, and corresponding dark colors represent their means. P values are based on unpaired t tests.

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