SummaryHeritable epigenetic factors can contribute to complex disease etiology. Here we examine the contribution of DNA methylation to complex traits that are precursors to heart disease, diabetes, and osteoporosis. We profiled DNA methylation in the liver using bisulfite sequencing in 90 mouse inbred strains, genome-wide expression levels, proteomics, metabolomics, and 68 clinical traits and performed epigenome-wide association studies (EWAS). We found associations with numerous clinical traits including bone density, insulin resistance, expression, and protein and metabolite levels. A large proportion of associations were unique to EWAS and were not identified using GWAS. Methylation levels were regulated by genetics largely in cis, but w...
Epigenetic modifications such as DNA methylation play a key role in gene regulation and disease susc...
BackgroundDNA methylation is a contributing factor to both rare and common human diseases, and plays...
Sparse profiling of CpG methylation in blood by microarrays has identified epigenetic links to comm...
SummaryHeritable epigenetic factors can contribute to complex disease etiology. Here we examine the ...
Heritable epigenetic factors can contribute to complex disease etiology. Here we examine the contr...
Epigenetic modifications such as DNA methylation play a key role in gene regulation and disease susc...
Previously, we reported strong influences of genetic variants on metabolic phenotypes, some of them ...
Characterizing the complex relationship between genetic, epigenetic, and transcriptomic variation ha...
Most epigenome-wide association studies to date have been conducted in blood. However, metabolic syn...
DNA methylation patterns are important for establishing cell, tissue, and organism phenotypes, but l...
Epigenetic modifications such as DNA methylation play a key role in gene regulation and disease susc...
Epigenetic modifications such as DNA methylation play a key role in gene regulation and disease susc...
Epigenetic modifications such as DNA methylation play a key role in gene regulation and disease susc...
Genetic and environmental determinants of skeletal phenotypes such as bone mineral density (BMD) may...
Dietary, pharmacological and genetic interventions can extend health- and lifespan in diverse mammal...
Epigenetic modifications such as DNA methylation play a key role in gene regulation and disease susc...
BackgroundDNA methylation is a contributing factor to both rare and common human diseases, and plays...
Sparse profiling of CpG methylation in blood by microarrays has identified epigenetic links to comm...
SummaryHeritable epigenetic factors can contribute to complex disease etiology. Here we examine the ...
Heritable epigenetic factors can contribute to complex disease etiology. Here we examine the contr...
Epigenetic modifications such as DNA methylation play a key role in gene regulation and disease susc...
Previously, we reported strong influences of genetic variants on metabolic phenotypes, some of them ...
Characterizing the complex relationship between genetic, epigenetic, and transcriptomic variation ha...
Most epigenome-wide association studies to date have been conducted in blood. However, metabolic syn...
DNA methylation patterns are important for establishing cell, tissue, and organism phenotypes, but l...
Epigenetic modifications such as DNA methylation play a key role in gene regulation and disease susc...
Epigenetic modifications such as DNA methylation play a key role in gene regulation and disease susc...
Epigenetic modifications such as DNA methylation play a key role in gene regulation and disease susc...
Genetic and environmental determinants of skeletal phenotypes such as bone mineral density (BMD) may...
Dietary, pharmacological and genetic interventions can extend health- and lifespan in diverse mammal...
Epigenetic modifications such as DNA methylation play a key role in gene regulation and disease susc...
BackgroundDNA methylation is a contributing factor to both rare and common human diseases, and plays...
Sparse profiling of CpG methylation in blood by microarrays has identified epigenetic links to comm...