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Selective down-regulation of human papillomavirus transcription by 2-deoxyglucose
T Maehama1, A Patzelt, M Lengert
1Department of Obstetrics and Gynecology, School of Medicine, University of the Ryukyus, Japan.
Abstract:
The glycolytic pathway inhibitor 2-deoxyglucose (2-DG) is capable of suppressing the transcription of the human pathogenic papillomavirus type 18 (HPV 18) in cervical carcinoma cells and derived non-tumorigenic somatic cell hybrids at the level of transcription initiation. HPV down-regulation is selective, since other reference genes are not affected or even up-regulated under the same experimental conditions. Moreover, 2-DG appears to restore the normal half-life of the tumor suppressor gene product p53, because the protein is strongly up-regulated after HPV 18 E6/E7 suppression. The observed 2-DG-effect is not cytotoxic and is reversible after refeeding with fresh medium. HPV 18 suppression by 2-DG can be completely abrogated by simultaneous treatment with the intracellular Ca2+ antagonist TMB-8, indicating that Ca2+, a known intracellular "second messenger", is involved in this process. Elevated c-myc and p53 expression appears to be responsible for the time-dependent accumulation of apoptotic cells after prolonged 2-DG treatment. The finding that 2-DG acts selectively against the expression of a human pathogenic papillomavirus strongly suggests that an appropriate level of glycolysis is not only a peculiarity of growing tumors, but even may be an essential prerequisite for the maintenance of virus-specific E6/E7 gene expression. Our results may have substantial implications for the potential therapeutic application of 2-DG or other glucose derivatives in the treatment of precancerous and malignant HPV-associated lesions.
Insights
The glycolytic inhibitor 2-deoxyglucose (2-DG) selectively suppresses human papillomavirus type 18 (HPV 18) transcription. This finding suggests glycolysis is essential for HPV gene maintenance and offers potential therapeutic applications for HPV-associated lesions.
Area of Science:
- Biochemistry
- Molecular Biology
- Oncology
Background:
- Human papillomavirus type 18 (HPV 18) is associated with cervical carcinoma.
- Glycolysis plays a role in tumor cell metabolism.
- The role of glycolysis in maintaining viral gene expression is not well understood.
Purpose of the Study:
- To investigate the effect of the glycolytic inhibitor 2-deoxyglucose (2-DG) on HPV 18 transcription.
- To explore the potential therapeutic implications of targeting glycolysis in HPV-associated cancers.
Main Methods:
- Treatment of cervical carcinoma cells and somatic cell hybrids with 2-DG.
- Analysis of HPV 18 transcription initiation.
- Assessment of reference gene expression, p53 and c-myc levels, and apoptosis.
- Investigation of the role of intracellular calcium (Ca2+) using TMB-8.
Main Results:
- 2-DG selectively suppressed HPV 18 transcription initiation without affecting other genes.
- 2-DG treatment restored normal p53 half-life and led to its up-regulation.
- The effect of 2-DG was reversible and not cytotoxic.
- Intracellular Ca2+ was involved in 2-DG-mediated HPV 18 suppression.
- Prolonged 2-DG treatment resulted in apoptosis, linked to elevated c-myc and p53.
Conclusions:
- Glycolysis is essential for the maintenance of HPV 18 E6/E7 gene expression.
- 2-DG selectively inhibits HPV 18, suggesting potential therapeutic use for HPV-associated precancerous and malignant lesions.
- Targeting cellular glycolysis may be a viable strategy for treating HPV-driven cancers.