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Revisiting the role of endogenous STAT3 in HPV-positive cervical cancer cells
Tobias D Strobel1,2, Maria Weber1, Nora Heber1,2
1Molecular Therapy of Virus-Associated Cancers, German Cancer Research Center (DKFZ), Heidelberg, Germany.
Abstract:
Novel treatment options for human papillomavirus (HPV)-induced cancers are urgently required. The oncogenic transcription factor signal transducer and activator of transcription 3 (STAT3) is considered to be constitutively active in HPV-positive cervical cancer cells and essential for their proliferation. Moreover, STAT3 was reported to undergo mutually stimulatory interactions with the HPV E6/E7 oncogenes. Thus, inhibiting STAT3 in HPV-positive cancer cells is under discussion to provide a powerful novel therapeutic strategy. We here show that the antifungal drug ciclopirox destabilizes the STAT3 protein by acting as an iron chelator. However, by exploring the functional consequences of STAT3 inhibition in HPV-positive cancer cells, we obtained several unexpected results. Chemical STAT3 inhibitors heterogeneously affect cervical cancer cell proliferation and those which act antiproliferative also block the growth of STAT3 knockout cells, indicating induction of off-target effects. In contrast to several chemical inhibitors, genetic inhibition of STAT3 expression by either RNA interference or the CRISPR/Cas9 method does not appreciably affect cervical cancer cell proliferation. Transcriptome analyses indicate that blocking STAT3 expression in HPV-positive cancer cells has very limited effects on putative STAT3 target genes. Although the targeted inhibition of specific growth-promoting signaling pathways leads to a feedback activation of STAT3 in cervical cancer cells via Janus kinase 1/2, this does not lead to treatment resistance. Moreover, we did not obtain experimental evidence for a STAT3-linked activation of HPV E6/E7 oncogene expression or, vice versa, an E6/E7-dependent activation of STAT3, at endogenous conditions in cervical cancer cells. Collectively, these findings question the essential role of STAT3 in cervical cancer cell proliferation and the strategy to inhibit STAT3 in these cells for therapeutic purposes.
Insights
Novel treatments for human papillomavirus (HPV)-induced cancers are needed. This study questions the essential role of signal transducer and activator of transcription 3 (STAT3) in HPV-positive cervical cancer proliferation, suggesting current inhibition strategies may be ineffective.
Area of Science:
- Oncology
- Molecular Biology
- Virology
Background:
- Human papillomavirus (HPV)-induced cancers necessitate new therapies.
- Signal transducer and activator of transcription 3 (STAT3) is implicated in HPV-positive cervical cancer proliferation and interacts with HPV E6/E7 oncogenes.
- STAT3 inhibition is explored as a potential therapeutic strategy.
Purpose of the Study:
- To investigate the functional consequences of STAT3 inhibition in HPV-positive cervical cancer cells.
- To evaluate the efficacy of STAT3 inhibition as a therapeutic strategy for HPV-induced cancers.
Main Methods:
- Chemical inhibition of STAT3 using ciclopirox and other agents.
- Genetic inhibition of STAT3 via RNA interference and CRISPR/Cas9.
- Transcriptome analysis to assess STAT3 target gene expression.
- Investigation of STAT3 interactions with HPV E6/E7 oncogenes.
Main Results:
- Chemical STAT3 inhibitors showed heterogeneous effects on cell proliferation, with some causing off-target effects.
- Genetic STAT3 inhibition did not significantly impact cervical cancer cell proliferation.
- Transcriptome analysis revealed limited effects of STAT3 inhibition on target genes.
- No substantial evidence for STAT3-linked activation of HPV E6/E7 or vice versa was found.
Conclusions:
- The essential role of STAT3 in cervical cancer cell proliferation is questioned.
- Current strategies targeting STAT3 inhibition for HPV-induced cancers may require re-evaluation due to unexpected findings and potential off-target effects.
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