bioRxiv · 10.1101/750638
Paternal cigarette smoke alters DNA methylation in sperm and gene expression in offspring brain
Abstract
Paternal cigarette smoke (CS) exposure is associated with increased risk of behavioral disorders and cancer in offspring, but the mechanism has not been identified. This study used mouse models to evaluate: 1) what impact paternal CS exposure has on sperm DNA methylation (DNAme), 2) whether sperm DNAme changes persist after CS exposure ends, 3) the degree to which DNAme and gene expression changes occur in offspring and 4) the mechanism underlying impacts of CS exposure. We demonstrate that CS exposure induces sperm DNAme changes that are partially corrected within 28 days of removal from CS exposure. Additionally, paternal smoking causes changes in neural DNAme and gene expression in offspring. Remarkably, the effects of CS exposure are largely recapitulated in oxidative stress-compromised Nrf2-/- mice and their offspring, independent of paternal smoking. These results demonstrate that paternal CS exposure impacts offspring phenotype and that oxidative stress underlies CS induced heritable epigenetic changes.
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Murphy, P. J., Guo, J., Jenkins, T. G., James, E. R., Hoidal, J. R., Huecksteadt, T., Hotaling, J. M., Carrell, D. T., Cairns, B. R., Aston, K. I.. 2019-08-30. Paternal cigarette smoke alters DNA methylation in sperm and gene expression in offspring brain. https://doi.org/10.1101/750638
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