Abstract

BackgroundOxidative damage and DNA repair dysfunction are associated with carcinogenesis. 8-OHdG is one of the major oxidative DNA adducts. Present work aims to investigate whether the expression of 8-OHdG and its key repair gene hOGG1 play distinctive role in two types of serous ovarian cancer.Materials and methods8-OHdG level in DNA from tumor and matched tumor-adjacent normal tissue in 48 high-grade papillary serous carcinomas (HG-SOC), 24 low-grade papillary serous carcinomas (LG-SOC), 20 serous cystadenomas, and 16 non-tumor control ovaries was tested. The Cox proportional hazards model and the log-rank test were used to assess the associations between the 8-OHdG level in two types of serous cancer and patients’ survival. Real-time polymerase chain reaction and protein immunoblot were employed to detect hOGG1 mRNA and protein levels in tumor and adjacent normal tissues. Immunohistochemistry was used to determine the expression of hOGG1 and p53.ResultsThere was no difference of average 8-OHdG/106dG DNA level either between HG-SOC (27.8 ± 8.9), LG-SOC (25.2 ± 7.4) and benign serous cystadenoma (26.5 ± 7.7, p = 0.35); or between the tumor-adjacent normal tissue of HG-SOC (18.8 ± 5.2), LG-SOC (21.4 ± 6.5), benign serous cystadenoma (20.5 ± 9.1) and non-tumor ovary (21.6 ± 4.9, p = 0.62). The 8-OHdG/106dG level was significantly higher in tumor comparing to that in matched normal tissue adjacent to carcinoma in HG-SOC (1.52 ± 0.52, p = 0.02), but not in LG-SOC or benign serous cystadenoma. Increased level of 8-OHdG in tumor DNA was an independent factor of overall survival in serous ovarian carcinoma upon multivariate analysis (p < 0.01). Increased level of 8-OHdG in tumor DNA indicates poorer overall and progression-free survival durations than counterparts (47.3 vs 105.7 months and 13.5 vs 45.3 months, respectively). Protein levels of hOGG1 were remarkably decreased in HG-SOC (p < 0.01), but not in LG-SOC and serous cystadenoma compared with the tissue adjacent to carcinoma. A positive result on p53 immunostaining was associated with lower hOGG1 expression in HG-SOC (p = 0.04).ConclusionIncreased 8-OHdG level and decreased expression of hOGG1 in tumor were found in HG-SOC but not LG-SOC. Increased 8-OHdG level in tumor DNA was significantly associated with poorer overall survival and progression-free survival in serous ovarian carcinoma.

Highlights

  • Oxidative damage and DNA repair dysfunction are associated with carcinogenesis. 8-OHdG is one of the major oxidative DNA adducts

  • Increased 8-OHdG level and decreased expression of Human 8oxoguanine DNA glycosylase (hOGG1) in tumor were found in highgrade papillary serous carcinomas (HG-SOC) but not low-grade papillary serous carcinomas (LG-SOC)

  • Increased 8-OHdG level in tumor DNA was significantly associated with poorer overall survival and progressionfree survival in serous ovarian carcinoma

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Summary

Background

Epithelial ovarian cancer (EOC) is the most lethal gynecological malignancy in USA, and the second rank in China while the incidence rate of EOC is increasing during the past decades [1,2]. Whether other DNA repair-associated genes confer risk to the development of sporadic EOC remains uncertain. We found that variations in the 5′UTR of hOGG1 gene conferred risk to type II but not to type I EOC [17]. Studies revealed that increasing 8-OHdG level is associated with higher stage and non-optimal surgical outcome in EOC [20,21], and may confer risk to high grade subtype. There was still no evidence exploring the relationship between 8-OHdG or hOGG1 alteration and the p53 mutation in serous ovarian cancer. We explored 8-OHdG level and compared hOGG1 mRNA and protein levels in the two types of SOC, benign serous cystadenomas, and normal ovaries (non-tumor control). To eliminate differences in base repair ability among individuals, a match pair study of tumor and adjacent non-tumor tissue was conducted

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