Mutually linked expression and methylation dynamics in the brain govern genome regulation over the whole lifetime with an impact on cognition, psychological disorders, and cancer. We performed a joint study of gene expression and DNA methylation of brain tissue originating from the human prefrontal cortex of individuals across the lifespan to describe changes in cellular programs and their regulation by epigenetic mechanisms. The analysis considers previous knowledge in terms of functional gene signatures and chromatin states derived from independent studies, aging profiles of a battery of chromatin modifying enzymes, and data of gliomas and neuropsychological disorders for a holistic view on the development and aging of the brain. Expressi...
Abstract Background Several recent studies reported aging effects on DNA methylation levels of indiv...
AbstractTo characterize the promoterome of caudate and putamen regions (striatum), frontal and tempo...
Epigenetics is a quickly growing field encompassing mechanisms regulating gene expression that do no...
Mutually linked expression and methylation dynamics in the brain govern genome regulation over the w...
The role of DNA cytosine methylation, an epigenetic regulator of chromatin structure and function, d...
Understanding the fundamental dynamics of epigenome variation during normal aging is critical for el...
The role of DNA cytosine methylation, an epigenetic regulator of chromatin structure and function, d...
The human prefrontal cortex (PFC), a mastermind of the brain, is one of the last brain regions to ma...
Developmental processes, genes and environmental factors interact to produce changes in cognition an...
With ever-increasing elder population, the high incidence of age-related diseases such as neurodegen...
Many cellular constituents in the human brain permanently exit from the cell cycle during pre- or ea...
BACKGROUND: Alterations to cellular and molecular programs with brain aging result in cognitive impa...
Aging and cancer are two interrelated biological processes, with aging being one of the most importa...
To characterize the promoterome of caudate and putamen regions (striatum), frontal and temporal cort...
One of the central questions in modern biology is to understand the molecular basis of phenotypic va...
Abstract Background Several recent studies reported aging effects on DNA methylation levels of indiv...
AbstractTo characterize the promoterome of caudate and putamen regions (striatum), frontal and tempo...
Epigenetics is a quickly growing field encompassing mechanisms regulating gene expression that do no...
Mutually linked expression and methylation dynamics in the brain govern genome regulation over the w...
The role of DNA cytosine methylation, an epigenetic regulator of chromatin structure and function, d...
Understanding the fundamental dynamics of epigenome variation during normal aging is critical for el...
The role of DNA cytosine methylation, an epigenetic regulator of chromatin structure and function, d...
The human prefrontal cortex (PFC), a mastermind of the brain, is one of the last brain regions to ma...
Developmental processes, genes and environmental factors interact to produce changes in cognition an...
With ever-increasing elder population, the high incidence of age-related diseases such as neurodegen...
Many cellular constituents in the human brain permanently exit from the cell cycle during pre- or ea...
BACKGROUND: Alterations to cellular and molecular programs with brain aging result in cognitive impa...
Aging and cancer are two interrelated biological processes, with aging being one of the most importa...
To characterize the promoterome of caudate and putamen regions (striatum), frontal and temporal cort...
One of the central questions in modern biology is to understand the molecular basis of phenotypic va...
Abstract Background Several recent studies reported aging effects on DNA methylation levels of indiv...
AbstractTo characterize the promoterome of caudate and putamen regions (striatum), frontal and tempo...
Epigenetics is a quickly growing field encompassing mechanisms regulating gene expression that do no...