Published February 24, 2011 | Version v1
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A Genome-Wide Study of DNA Methylation Patterns and Gene Expression Levels in Multiple Human and Chimpanzee Tissues

Description

The modification of DNA by methylation is an important epigenetic mechanism that affects the spatial and temporal regulation of gene expression. Methylation patterns have been described in many contexts within and across a range of species. However, the extent to which changes in methylation might underlie inter-species differences in gene regulation, in particular between humans and other primates, has not yet been studied. To this end, we studied DNA methylation patterns in livers, hearts, and kidneys from multiple humans and chimpanzees, using tissue samples for which genome-wide gene expression data were also available. Using the multi-species gene expression and methylation data for 7,723 genes, we were able to study the role of promoter DNA methylation in the evolution of gene regulation across tissues and species. We found that inter-tissue methylation patterns are often conserved between humans and chimpanzees. However, we also found a large number of gene expression differences between species that might be explained, at least in part, by corresponding differences in methylation levels. In particular, we estimate that, in the tissues we studied, inter-species differences in promoter methylation might underlie as much as 12%–18% of differences in gene expression levels between humans and chimpanzees.

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Additional details

Identifiers

DOI
10.1371/journal.pgen.1001316
Other
oai:uchicago.tind.io:10581

Funding

Howard Hughes Medical Institute
National Institute of General Medical Sciences
GM084996
National Institute of General Medical Sciences
GM077959
National Institute of General Medical Sciences
MH084703
American Heart Association
pre-doctoral fellowship
Sir Henry Wellcome
postdoctoral fellowship

UChicago Information

Division(s)
Biological Sciences Division
Department(s)
Human Genetics