Development is often assumed to be hardwired in the genome, but several lines of evidence indicate that it is susceptible to environmental modulation with potential long-term consequences, including in mammals1,2. The embryonic germline is of particular interest because of the potential for intergenerational epigenetic effects. The mammalian germline undergoes extensive DNA demethylation3–7 that occurs in large part by passive dilution of methylation over successive cell divisions, accompanied by active DNA demethylation by TET enzymes3,8–10. TET activity has been shown to be modulated by nutrients and metabolites, such as vitamin C11–15. Here we show that maternal vitamin C is required for proper DNA demethylation and the development of fe...
In mammals, cytosine methylation is predominantly restricted to CpG dinucleotides and stably distrib...
SummaryTet enzymes (Tet1/2/3) convert 5-methylcytosine (5mC) to 5-hydroxymethylcytosine (5hmC) in va...
Abstract Background Accurate regulation of DNA methylation is necessary for normal cells to differen...
Development is often assumed to be hardwired in the genome, but several lines of evidence indicate t...
There is a growing appreciation that environmental factors can impact embryonic development and prog...
DNA methylation is a heritable epigenetic modification involved in gene silencing, imprinting, and t...
Histone methylation patterns regulate gene expression and are highly dynamic during development. The...
Abstract Background Histone methylation patterns regulate gene expression and are highly dynamic dur...
DNA methylation is a heritable epigenetic modification involved in gene silencing, imprinting, and t...
The maternal diet during pregnancy is a key determinant of offspring health. Early studies have link...
Vitamin C (ascorbate) is a widely used medium supplement in embryonic stem cell culture. Here, we sh...
Background Environmental perturbation of epigenetic mechanisms is linked to a growing number of dise...
Epigenetic mechanisms, such as DNA methylation, regulate gene expression and, subsequently, phenotyp...
Suboptimal environmental conditions during development can substantially alter the epigenome. Stable...
It has been known for decades that maternal folate deficiency impairs fetal development. However, th...
In mammals, cytosine methylation is predominantly restricted to CpG dinucleotides and stably distrib...
SummaryTet enzymes (Tet1/2/3) convert 5-methylcytosine (5mC) to 5-hydroxymethylcytosine (5hmC) in va...
Abstract Background Accurate regulation of DNA methylation is necessary for normal cells to differen...
Development is often assumed to be hardwired in the genome, but several lines of evidence indicate t...
There is a growing appreciation that environmental factors can impact embryonic development and prog...
DNA methylation is a heritable epigenetic modification involved in gene silencing, imprinting, and t...
Histone methylation patterns regulate gene expression and are highly dynamic during development. The...
Abstract Background Histone methylation patterns regulate gene expression and are highly dynamic dur...
DNA methylation is a heritable epigenetic modification involved in gene silencing, imprinting, and t...
The maternal diet during pregnancy is a key determinant of offspring health. Early studies have link...
Vitamin C (ascorbate) is a widely used medium supplement in embryonic stem cell culture. Here, we sh...
Background Environmental perturbation of epigenetic mechanisms is linked to a growing number of dise...
Epigenetic mechanisms, such as DNA methylation, regulate gene expression and, subsequently, phenotyp...
Suboptimal environmental conditions during development can substantially alter the epigenome. Stable...
It has been known for decades that maternal folate deficiency impairs fetal development. However, th...
In mammals, cytosine methylation is predominantly restricted to CpG dinucleotides and stably distrib...
SummaryTet enzymes (Tet1/2/3) convert 5-methylcytosine (5mC) to 5-hydroxymethylcytosine (5hmC) in va...
Abstract Background Accurate regulation of DNA methylation is necessary for normal cells to differen...