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PMID: 25813726 已发表 · ppublish 英语

Gene promoter methylation and DNA repair capacity in monozygotic twins with discordant smoking habits.

Ottini Laura, Rizzolo Piera, Siniscalchi Ester, Zijno Andrea, Silvestri Valentina, Crebelli Riccardo, Marcon Francesca

摘要

The influence of DNA repair capacity, plasma nutrients and tobacco smoke exposure on DNA methylation was investigated in blood cells of twenty-one couples of monozygotic twins with discordant smoking habits. All study subjects had previously been characterized for mutagen sensitivity with challenge assays with ionizing radiation in peripheral blood lymphocytes. Plasma levels of folic acid, vitamin B12 and homocysteine were also available from a previous investigation. In this work DNA methylation in the promoter region of a panel of ten genes involved in cell cycle control, differentiation, apoptosis and DNA repair (p16, FHIT, RAR, CDH1, DAPK1, hTERT, RASSF1A, MGMT, BRCA1 and PALB2) was assessed in the same batches of cells isolated for previous studies, using the methylation-sensitive high-resolution melting technique. Fairly similar profiles of gene promoter methylation were observed within co-twins compared to unrelated subjects (p= 1.23 × 10(-7)), with no significant difference related to smoking habits (p = 0.23). In a regression analysis the methylation index of study subjects, used as synthetic descriptor of overall promoter methylation, displayed a significant inverse correlation with radiation-induced micronuclei (p = 0.021) and plasma folic acid level (p = 0.007) both in smokers and in non-smokers. The observed association between repair of radiation-induced DNA damage and promoter methylation suggests the involvement of the DNA repair machinery in DNA modification. Data also highlight the possible modulating effect of folate deficiency on DNA methylation and the strong influence of familiarity on the individual epigenetic profile.

关键词
DNA methylation DNA repair capacity Folic acid Tobacco smoke Twins
文献信息
期刊
Mutation research. Genetic toxicology and environmental mutagenesis
期刊简称
Mutat Res Genet Toxicol Environ Mutagen
发表日期
2015-05-26
收录日期
2015-03-27
更新日期
2015-03-27
语言
英语
国家/地区
Netherlands
NLM ID
101632149
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