Tissue- and strain-specific effects of a genotoxic carcinogen 1,3-butadiene on chromatin and transcription

被引:0
|
作者
Jennifer W. Israel
Grace A. Chappell
Jeremy M. Simon
Sebastian Pott
Alexias Safi
Lauren Lewis
Paul Cotney
Hala S. Boulos
Wanda Bodnar
Jason D. Lieb
Gregory E. Crawford
Terrence S. Furey
Ivan Rusyn
机构
[1] University of North Carolina,Department of Genetics
[2] Texas A&M University,Department of Veterinary Integrative Biosciences, College of Veterinary Medicine and Biomedical Sciences
[3] University of North Carolina,Department of Environmental Sciences and Engineering
[4] University of Chicago,Department of Human Genetics
[5] Duke University,Department of Pediatrics, Duke Center for Genomic and Computational Biology
[6] University of North Carolina,Department of Biology
[7] University of North Carolina School of Medicine,UNC Lineberger Comprehensive Cancer Center
来源
Mammalian Genome | 2018年 / 29卷
关键词
Chromatin Accessibility; Modulate Chromatin States; Butadiene Exposure; Active Chromatin Regions; Chord Diagram;
D O I
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学科分类号
摘要
Epigenetic effects of environmental chemicals are under intense investigation to fill existing knowledge gaps between environmental/occupational exposures and adverse health outcomes. Chromatin accessibility is one prominent mechanism of epigenetic control of transcription, and understanding of the chemical effects on both could inform the causal role of epigenetic alterations in disease mechanisms. In this study, we hypothesized that baseline variability in chromatin organization and transcription profiles among various tissues and mouse strains influence the outcome of exposure to the DNA damaging chemical 1,3-butadiene. To test this hypothesis, we evaluated DNA damage along with comprehensive quantification of RNA transcripts (RNA-seq), identification of accessible chromatin (ATAC-seq), and characterization of regions with histone modifications associated with active transcription (ChIP-seq for acetylation at histone 3 lysine 27, H3K27ac). We collected these data in the lung, liver, and kidney of mice from two genetically divergent strains, C57BL/6J and CAST/EiJ, that were exposed to clean air or to 1,3-butadiene (~600 ppm) for 2 weeks. We found that tissue effects dominate differences in both gene expression and chromatin states, followed by strain effects. At baseline, xenobiotic metabolism was consistently more active in CAST/EiJ, while immune system pathways were more active in C57BL/6J across tissues. Surprisingly, even though all three tissues in both strains harbored butadiene-induced DNA damage, little transcriptional effect of butadiene was observed in liver and kidney. Toxicologically relevant effects of butadiene in the lung were on the pathways of xenobiotic metabolism and inflammation. We also found that variability in chromatin accessibility across individuals (i.e., strains) only partially explains the variability in transcription. This study showed that variation in the basal states of epigenome and transcriptome may be useful indicators for individuals or tissues susceptible to genotoxic environmental chemicals.
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页码:153 / 167
页数:14
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