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CHD5, a tumor suppressor that is epigenetically silenced in lung cancer
Rui Zhao1, Qitao Yan, Jingye Lv
1Institute of Molecular Biology, Southern Medical University, Guangzhou 510515, PR China. zhaoruiruizhao@yahoo.com.cn
Abstract:
Chromodomain helicase DNA binding protein 5 (CHD5) is a potent tumor suppressor that serves as a master regulator of a tumor-suppressive network. Examination of the role played by CHD5 in a wide range of human cancers is warranted. In this study, we focused on the epigenetic modification and tumor-suppressive role of CHD5 in lung cancer. We measured CHD5 mRNA and protein expression in lung cancer cells, lung cancer tissues, and their corresponding noncancerous lung tissues using real-time PCR and Western blot analysis. We then determined the methylation status of the CHD5 promoter in these samples using methylation-specific sequencing and analyzed CHD5 re-expression in lung cancer cells treated with or without 5-aza-2-deoxycytidine, an inhibitor of DNA methylation. Next, the lung cancer cell clones stably expressing EGFP-CHD5 protein or EGFP protein, respectively, were obtained and the effects of restored CHD5 expression on cell proliferation, colony formation, and tumorigenicity were assessed. CHD5 expression ranged from low to absent in the lung cancer cell lines and tissues examined; the CHD5 promoter was hyperethylated in these samples. Treatment with 5-aza-dC resulted in a localized decrease in methylation density and an increase in CHD5 expression. Clonogenicity and tumor growth were abrogated in A549 and H1299 cells upon restoration of CHD5 expression. A significant reduction in clonogenicity was observed; an average of 47.83 ± 4.6% reduction for A549-EGFP-CHD5 was observed compared to A549-EGFP, and an average of 56.39 ± 5.3% reduction for H1299-EGFP-CHD5 was observed compared to H1299-EGFP. A549-EGFP exhibited an average tumor size of 452.3 ± 36.5 mm(3), whereas A549-EGFP-CHD5 exhibited an average tumor size of only 57.7 ± 18.5 mm(3). Thus, our findings indicate that CHD5 is a potential tumor suppressor gene that is inactivated via an epigenetic mechanism in lung cancer.
Insights
Chromodomain helicase DNA binding protein 5 (CHD5) is a tumor suppressor frequently silenced in lung cancer due to promoter hypermethylation. Restoring CHD5 expression inhibits lung cancer cell proliferation and tumor growth, indicating its potential as a therapeutic target.
Area of Science:
- Molecular Biology
- Cancer Research
- Epigenetics
Background:
- Chromodomain helicase DNA binding protein 5 (CHD5) is a known tumor suppressor.
- Its role in lung cancer, particularly epigenetic regulation, requires further investigation.
- Understanding CHD5
Purpose of the Study:
- To investigate the epigenetic modification and tumor-suppressive function of CHD5 in lung cancer.
- To assess the impact of CHD5 re-expression on lung cancer cell behavior.
Main Methods:
- Quantitative real-time PCR and Western blot to measure CHD5 expression.
- Methylation-specific sequencing to analyze CHD5 promoter methylation.
- In vitro studies involving 5-aza-2-deoxycytidine treatment and stable cell line expression.
Main Results:
- CHD5 expression was significantly reduced or absent in lung cancer tissues and cell lines.
- The CHD5 promoter was hypermethylated in lung cancer samples.
- Re-expression of CHD5 suppressed cell proliferation, colony formation, and tumorigenicity in lung cancer cells.
Conclusions:
- CHD5 acts as a tumor suppressor gene in lung cancer.
- Epigenetic silencing via promoter hypermethylation inactivates CHD5 in lung cancer.
- Restoring CHD5 expression holds therapeutic potential for lung cancer treatment.
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