DNA methylation controls several cellular processes, from early development to old age, including biological responses to endogenous or exogenous stimuli contributing to disease transition. As a result, minimal DNA methylation changes during developmental stages drive severe phenotypes, as observed in germ-line imprinting disorders, while genome-wide alterations occurring in somatic cells are linked to cancer onset and progression. By summarizing the molecular events governing DNA methylation, we focus on the methods that have facilitated mapping and understanding of this epigenetic mark in healthy conditions and diseases. Overall, we review the bright (health-related) and dark (disease-related) side of DNA methylation changes, outlining ho...
The inheritance of epigenetic signals involves DNA methylation. DNA methylation patterns are inherit...
DNA methylation is an epigenetic modification that plays a central regulatory role in various biolog...
DNA methylation is a well-studied epigenetic modification essential for efficient cellular different...
DNA methylation controls several cellular processes, from early development to old age, including bi...
DNA methylation is an epigenetic mark classically described to repress gene expression in a long and...
DNA methylation is an epigenetic mark classically described to repress gene expression in a long and...
AbstractMethylation of cytosines is a pervasive feature of eukaryotic genomes and an important epige...
DNA methylation is one of the best-characterized epigenetic modifications and has been implicated in...
DNA methylation is one of the best-characterized epigenetic modifications and has been implicated in...
The pristine formation of complex organs depends on sharp temporal and spatial control of gene expre...
The pristine formation of complex organs depends on sharp temporal and spatial control of gene expre...
The pristine formation of complex organs depends on sharp temporal and spatial control of gene expre...
DNA methylation is an epigenetic modification that plays a central regulatory role in various biolog...
The inheritance of epigenetic signals involves DNA methylation. DNA methylation patterns are inherit...
While every cell in an organism is genetically identical, there are marked phenotypic differences be...
The inheritance of epigenetic signals involves DNA methylation. DNA methylation patterns are inherit...
DNA methylation is an epigenetic modification that plays a central regulatory role in various biolog...
DNA methylation is a well-studied epigenetic modification essential for efficient cellular different...
DNA methylation controls several cellular processes, from early development to old age, including bi...
DNA methylation is an epigenetic mark classically described to repress gene expression in a long and...
DNA methylation is an epigenetic mark classically described to repress gene expression in a long and...
AbstractMethylation of cytosines is a pervasive feature of eukaryotic genomes and an important epige...
DNA methylation is one of the best-characterized epigenetic modifications and has been implicated in...
DNA methylation is one of the best-characterized epigenetic modifications and has been implicated in...
The pristine formation of complex organs depends on sharp temporal and spatial control of gene expre...
The pristine formation of complex organs depends on sharp temporal and spatial control of gene expre...
The pristine formation of complex organs depends on sharp temporal and spatial control of gene expre...
DNA methylation is an epigenetic modification that plays a central regulatory role in various biolog...
The inheritance of epigenetic signals involves DNA methylation. DNA methylation patterns are inherit...
While every cell in an organism is genetically identical, there are marked phenotypic differences be...
The inheritance of epigenetic signals involves DNA methylation. DNA methylation patterns are inherit...
DNA methylation is an epigenetic modification that plays a central regulatory role in various biolog...
DNA methylation is a well-studied epigenetic modification essential for efficient cellular different...