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B-cell translocation gene 1 is downregulated by promoter methylation in ovarian carcinoma
Ji-Ye Kim1,2, Sung-Im Do3, Go Eun Bae4,5
1Department of Pathology, Severance Hospital, Yonsei University College of Medicine, Seoul, Republic of Korea.
Abstract:
A better understanding of tumor biology is important in the identification of molecules that are downregulated in malignancy and in determining their role in tumor suppression. B-cell translocation gene 1 (BTG1) has been shown to act as a tumor suppressor in several types of human malignancy. In this study, we analyzed BTG1 expression in ovarian carcinoma cell lines, and we investigated the mechanism underlying the observed alterations. The methylation status of the BTG1 promoter region was determined by methylation-specific polymerase chain reaction, and the effect of demethylation on BTG1 expression was analyzed. BTG1 protein expression in ovarian high-grade serous carcinoma tissue samples was evaluated using immunohistochemistry. BTG1 mRNA and protein expression were reduced in ovarian carcinoma cells. In BTG1-silenced ovarian cancer cells, the BTG1 promoter was highly methylated. Treatment with 5-aza-deoxycytidine significantly elevated BTG1 mRNA and protein expression. Immunostaining demonstrated that BTG1 expression was significantly lower in ovarian carcinoma tissue samples than nonpathological ovaries and fallopian tubes. We demonstrated that BTG1 silencing in ovarian carcinoma occurs through epigenetic repression and is involved in the ovarian carcinogenesis. Our data suggest that BTG1 is a potential therapeutic target for patients with ovarian carcinoma.
Insights
B-cell translocation gene 1 (BTG1) is downregulated in ovarian cancer due to epigenetic silencing. Restoring BTG1 expression may offer a new therapeutic strategy for ovarian carcinoma.
Area of Science:
- Oncology
- Molecular Biology
- Epigenetics
Background:
- Understanding tumor biology is crucial for identifying tumor suppressor molecules.
- B-cell translocation gene 1 (BTG1) has demonstrated tumor suppressor activity in various human malignancies.
Purpose of the Study:
- To analyze BTG1 expression in ovarian carcinoma.
- To investigate the mechanisms behind BTG1 alterations in ovarian cancer.
- To evaluate BTG1 as a potential therapeutic target.
Main Methods:
- Methylation-specific polymerase chain reaction to assess the BTG1 promoter methylation status.
- Demethylation treatment with 5-aza-deoxycytidine to observe effects on BTG1 expression.
- Immunohistochemistry to evaluate BTG1 protein levels in patient tissue samples.
Main Results:
- BTG1 mRNA and protein expression were significantly reduced in ovarian carcinoma cells and tissues.
- The BTG1 promoter was highly methylated in BTG1-silenced ovarian cancer cells.
- Demethylation treatment restored BTG1 mRNA and protein expression.
- BTG1 expression was notably lower in ovarian carcinoma tissues compared to normal tissues.
Conclusions:
- BTG1 silencing in ovarian carcinoma is mediated by epigenetic repression.
- Epigenetic silencing of BTG1 is implicated in ovarian carcinogenesis.
- BTG1 represents a potential therapeutic target for ovarian carcinoma patients.
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