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UHRF1 Induces Methylation of the TXNIP Promoter and Down-Regulates Gene Expression in Cervical Cancer
Min Jun Kim1, Han Ju Lee1, Mee Young Choi1
1Department of Anatomy and Convergence Medical Science, Institute of Health Sciences, College of Medicine, Gyeongsang National University, Jinju 52727, Korea.
Abstract:
DNA methylation, and consequent down-regulation, of tumour suppressor genes occurs in response to epigenetic stimuli during cancer development. Similarly, human oncoviruses, including human papillomavirus (HPV), up-regulate and augment DNA methyltransferase (DNMT) and histone deacetylase (HDAC) activities, thereby decreasing tumour suppressor genes (TSGs) expression. Ubiquitin-like containing PHD and RING finger domain 1 (UHRF1), an epigenetic regulator of DNA methylation, is overexpressed in HPV-induced cervical cancers. Here, we investigated the role of UHRF1 in cervical cancer by knocking down its expression in HeLa cells using lentiviral-encoded short hairpin (sh)RNA and performing cDNA microarrays. We detected significantly elevated expression of thioredoxin-interacting protein (TXNIP), a known TSG, in UHRF1-knockdown cells, and this gene is hypermethylated in cervical cancer tissue and cell lines, as indicated by whole-genome methylation analysis. Up-regulation of UHRF1 and decreased TXNIP were further detected in cervical cancer by western blot and immunohistochemistry and confirmed by Oncomine database analysis. Using chromatin immunoprecipitation, we identified the inverted CCAAT domain-containing UHRF1-binding site in the TXNIP promoter and demonstrated UHRF1 knockdown decreases UHRF1 promoter binding and enhances TXNIP expression through demethylation of this region. TXNIP promoter CpG methylation was further confirmed in cervical cancer tissue by pyrosequencing and methylation-specific polymerase chain reaction. Critically, down-regulation of UHRF1 by siRNA or UHRF1 antagonist (thymoquinone) induces cell cycle arrest and apoptosis, and ubiquitin-specific protease 7 (USP7), which stabilises and promotes UHRF1 function, is increased by HPV viral protein E6/E7 overexpression. These results indicate HPV might induce carcinogenesis through UHRF1-mediated TXNIP promoter methylation, thus suggesting a possible link between CpG methylation and cervical cancer.
Insights
Human papillomavirus (HPV) infection can lead to cervical cancer by increasing UHRF1, which silences the tumor suppressor gene TXNIP through DNA methylation. Reducing UHRF1 expression restores TXNIP and inhibits cancer cell growth.
Area of Science:
- Oncology
- Epigenetics
- Virology
Background:
- Cancer development involves DNA methylation silencing of tumor suppressor genes (TSGs).
- Human papillomavirus (HPV) infection is linked to cervical cancer and influences epigenetic regulators.
- UHRF1, an epigenetic regulator, is overexpressed in HPV-induced cervical cancers.
Purpose of the Study:
- Investigate the role of UHRF1 in cervical cancer pathogenesis.
- Determine the mechanism by which UHRF1 affects TSG expression, specifically TXNIP.
- Explore UHRF1 as a potential therapeutic target in HPV-associated cervical cancer.
Main Methods:
- Knockdown of UHRF1 expression in HeLa cells using lentiviral short hairpin RNA (shRNA).
- cDNA microarrays, whole-genome methylation analysis, western blot, immunohistochemistry, and chromatin immunoprecipitation.
- Analysis of cervical cancer tissues and cell lines, including Oncomine database verification.
Main Results:
- UHRF1 knockdown significantly elevated thioredoxin-interacting protein (TXNIP) expression, a known TSG.
- TXNIP promoter region showed increased CpG methylation in cervical cancer tissues and cell lines.
- UHRF1 knockdown reduced UHRF1 binding to the TXNIP promoter, leading to demethylation and enhanced TXNIP expression.
- Down-regulation of UHRF1 induced cell cycle arrest and apoptosis; HPV E6/E7 increased USP7, stabilizing UHRF1.
Conclusions:
- HPV may induce cervical carcinogenesis via UHRF1-mediated TXNIP promoter methylation.
- UHRF1 plays a critical role in suppressing TXNIP expression in cervical cancer.
- Targeting UHRF1 or its regulatory pathways presents a potential therapeutic strategy for cervical cancer.
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