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LDOC1 silenced by cigarette exposure and involved in oral neoplastic transformation
Chia-Huei Lee1, Kao-Lu Pan2, Ya-Chu Tang1
1National Institute of Cancer Research, National Health Research Institutes, Taipei, Taiwan.
Abstract:
Previously, we identified global epigenetic aberrations in smoking-associated oral squamous cell carcinoma (OSCC). We hypothesized that cigarette exposure triggers OSCC through alteration of the methylome of oral cells. Here we report that cigarette smoke condensate (CSC) significantly changes the genomic 5-methyldeoxycytidine content and nuclear accumulation of DNA methyltransferase 1 (DNMT1) and DNMT3A in human untransformed oral cells. By using integrated analysis of cDNA and methylation arrays of the smoking-associated dysplastic oral cell line and OSCC tumors, respectively, we identified four epigenetic targets--UCHL1, GPX3, LXN, and LDOC1--which may be silenced by cigarette. Results of quantitative methylation-specific PCR showed that among these four genes, LDOC1 promoter was the most sensitive to CSC. LDOC1 promoter hypermethylation and gene silencing followed 3 weeks of CSC treatment. LDOC1 knockdown led to a proliferative response and acquired clonogenicity of untransformed oral cells. Immunohistochemistry showed that LDOC1 was downregulated in 53.3% (8/15) and 57.1% (20/35) of premalignant oral tissues and early stage OSCCs, respectively, whereas 76.5% (13/17) of normal oral tissues showed high LDOC1 expression. Furthermore, the microarray data showed that LDOC1 expression had decreased in the lung tissues of current smokers compared with that in those of never smokers and had significantly decreased in the lung tumors of smokers compared with that in normal lung tissues. Our data suggest that CSC-induced promoter methylation may contribute to LDOC1 downregulation, thereby conferring oncogenic features to oral cells. These findings also imply a tumor suppressor role of LDOC1 in smoking-related malignancies such as OSCC and lung cancer.
Insights
Cigarette smoke alters oral cell epigenetics, silencing the LDOC1 gene. This downregulation promotes oral squamous cell carcinoma (OSCC) development and suggests LDOC1 acts as a tumor suppressor in smoking-related cancers.
Area of Science:
- Oncology
- Epigenetics
- Molecular Biology
Background:
- Smoking is a major risk factor for oral squamous cell carcinoma (OSCC).
- Global epigenetic aberrations are observed in smoking-associated OSCC.
- Cigarette smoke is hypothesized to trigger OSCC via methylome alterations.
Purpose of the Study:
- To investigate the effect of cigarette smoke condensate (CSC) on the methylome of oral cells.
- To identify specific genes silenced by cigarette exposure in oral carcinogenesis.
- To determine the role of LDOC1 in the development of smoking-related cancers.
Main Methods:
- Treatment of human untransformed oral cells with CSC.
- Analysis of genomic 5-methyldeoxycytidine content and DNA methyltransferase accumulation.
- Integrated analysis of cDNA and methylation arrays.
- Quantitative methylation-specific PCR and knockdown studies.
- Immunohistochemistry and microarray analysis of human tissues.
Main Results:
- CSC altered DNA methylation and increased DNMT1/DNMT3A in oral cells.
- Four genes (UCHL1, GPX3, LXN, LDOC1) were identified as potential epigenetic targets.
- LDOC1 promoter hypermethylation and silencing were observed after CSC treatment.
- LDOC1 knockdown induced proliferation and clonogenicity in oral cells.
- LDOC1 was downregulated in premalignant and OSCC tissues, and in lung tissues of smokers.
Conclusions:
- CSC-induced promoter methylation contributes to LDOC1 downregulation in oral cells.
- LDOC1 downregulation confers oncogenic features, suggesting a tumor suppressor role.
- LDOC1 may be a critical player in smoking-related malignancies like OSCC and lung cancer.
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