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Cigarette smoke-induced differential gene expression in blood cells from monozygotic twin pairs. | LitMetric

AI Article Synopsis

  • This study explores how cigarette smoking affects gene expression in the body, using a method called microarray analysis to examine the activity of 600 genes connected to toxic exposures.
  • Researchers focused on smoking-discordant monozygotic twins to reduce genetic variation, finding significant differences in gene expression and DNA adduct levels between smokers and non-smokers.
  • Key genes such as ATF4, MAPK14, SOD2, CYP1B1, and SERPINB2 were identified to change in response to smoking, indicating impacts on processes like cancer metabolism, oxidative stress, and preventing cell death.

Article Abstract

Chemical carcinogenesis induced by lifestyle factors like cigarette smoking is a major research area in molecular epidemiology. Gene expression analysis of large numbers of genes simultaneously using microarrays holds the opportunity to study the effects of such an exposure at the genome level yielding more mechanism-based information. Therefore, the aim of our study was to investigate multiple gene expressions in blood, indicative for the effects caused by cigarette smoke. Smoking-discordant monozygotic twin pairs (n=9) were studied to diminish influences of genetic background. Using a dedicated microarray containing 600 toxicologically relevant genes, we investigated which genes are differentially expressed in smokers compared to non-smokers. We also looked for genes of which the expression changes correlated with DNA adducts, a biomarker of effective dose for exposure to cigarette smoke carcinogens. The mean DNA adduct level in smokers differed significantly from that in non-smokers (mean +/- standard error 1.96 +/- 0.24 versus 1.17 +/- 0.16 adducts per 10(8) nucleotides, respectively; P=0.04). The genes of which the expression differed most significantly between smokers and non-smokers are ATF4, MAPK14, SOD2, CYP1B1 and SERPINB2. CYP1B1 and SOD2 can directly be linked to cigarette smoke exposure, whereas the other genes are associated with stress or environmentally induced response. Main functions of the genes influenced by cigarette smoking comprise carcinogen metabolism, oxidative stress response and anti-apoptosis.

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Source
http://dx.doi.org/10.1093/carcin/bgl199DOI Listing

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