4.6 Article

Effect of genetic ancestry on leukocyte global DNA methylation in cancer patients

期刊

BMC CANCER
卷 15, 期 -, 页码 -

出版社

BMC
DOI: 10.1186/s12885-015-1461-0

关键词

Genetic ancestry; DNA methylation; Admixture; Cancer

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资金

  1. Comision Honoraria de Lucha contra el Cancer (CHLCC)
  2. Comision Sectorial de Investigacion Cientifica (CSIC-UDELAR)
  3. Programa de Desarrollo de las Ciencias Basicas (PEDECIBA)
  4. ICREA Funding Source: Custom

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Background: The study of genetic variants alone is not enough to explain a complex disease like cancer. Alterations in DNA methylation patterns have been associated with different types of tumor. In order to detect markers of susceptibility for the development of cutaneous melanoma and breast cancer in the Uruguayan population, we integrated genetic and epigenetic information of patients and controls. Methods: We performed two case-control studies that included 49 individuals with sporadic cutaneous melanoma and 73 unaffected controls, and 179 women with sporadic breast cancer and 209 women controls. We determined the level of global leukocyte DNA methylation using relative quantification of 5mdC by HPLC, and we compared methylation levels between cases and controls with nonparametric statistical tests. Since the Uruguayan population is admixed and both melanoma and breast cancer have very high incidences in Uruguay compared to other populations, we examined whether individual ancestry influences global leucocyte DNA methylation status. We carried out a correlation analysis between the percentage of African, European and Native American individual ancestries, determined using 59 ancestry informative markers, and global DNA methylation in all participants. Results: We detected global DNA hypomethylation in leukocytes of melanoma and breast cancer patients compared with healthy controls (p < 0.001). Additionally, we found a negative correlation between African ancestry and global DNA methylation in cancer patients (p < 0.005). Conclusions: These results support the potential use of global DNA methylation as a biomarker for cancer risk. In addition, our findings suggest that the ancestral genome structure generated by the admixture process influences DNA methylation patterns, and underscore the importance of considering genetic ancestry as a modifying factor in epigenetic association studies in admixed populations such as Latino ones.

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