4.6 Article

Perinatal Lead (Pb) Exposure and Cortical Neuron-Specific DNA Methylation in Male Mice

期刊

GENES
卷 10, 期 4, 页码 -

出版社

MDPI
DOI: 10.3390/genes10040274

关键词

lead; Pb; DNA methylation; neuron; in utero

资金

  1. University of Michigan (UM) NIEHS/EPA Children's Environmental Health and Disease Prevention Centers [P20 ES018171/RD83480001, P01 ES022844/RD83543601]
  2. Michigan Lifestage Environmental Exposures and Disease (M-LEEaD) NIEHS Core Center [P30 ES017885]
  3. UM Institutional and Individual Training Grant [T32 ES007062]
  4. National Institute of Environmental Health Sciences
  5. National Institute of Aging [R01 ES025531, R01 ES025574, R01 AG055406, OD023285]
  6. University of Michigan internal funds

向作者/读者索取更多资源

Lead (Pb) exposure is associated with a wide range of neurological deficits. Environmental exposures may impact epigenetic changes, such as DNA methylation, and can affect neurodevelopmental outcomes over the life-course. Mating mice were obtained from a genetically invariant C57BL/6J background agouti viable yellow A(vy) strain. Virgin dams (a/a) were randomly assigned 0 ppm (control), 2.1 ppm (low), or 32 ppm (high) Pb-acetate water two weeks prior to mating with male mice (A(vy)/a), and this continued through weaning. At age 10 months, cortex neuronal nuclei were separated with NeuN(+) antibodies in male mice to investigate neuron-specific genome-wide promoter DNA methylation using the Roche NimbleGen Mouse 3x720K CpG Island Promoter Array in nine pooled samples (three per dose). Several probes reached p-value < 10(-5), all of which were hypomethylated: 12 for high Pb (minimum false discovery rate (FDR) = 0.16, largest intensity ratio difference = -2.1) and 7 for low Pb (minimum FDR = 0.56, largest intensity ratio difference = -2.2). Consistent with previous results in bulk tissue, we observed a weak association between early-life exposure to Pb and DNA hypomethylation, with some affected genes related to neurodevelopment or cognitive function. Although these analyses were limited to males, data indicate that non-dividing cells such as neurons can be carriers of long-term epigenetic changes induced in development.

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