Experience-dependent plasticity is the ability of brain circuits to undergo molecular, structural and functional changes as a function of neural activity. Neural activity continuously shapes our brain during all the stages of our life, from infancy through adulthood and beyond. Epigenetic modifications of histone proteins and DNA seem to be a leading molecular mechanism to modulate the transcriptional changes underlying the fine-tuning of synaptic connections and circuitry rewiring during activity-dependent plasticity. The recent discovery that cytosine methylation is an epigenetic mark particularly dynamic in brain cells has strongly increased the interest of neuroscientists in understanding the role of covalent modifications of DNA in act...
During brain development there are periods, called critical or sensitive period, in which specific r...
This paper explores the current state of the field (2017) of the role that epigenetics plays in memo...
DNA methylation is implicated in mammalian brain development and plasticity underlying learning and ...
Experience-dependent plasticity is the ability of brain circuits to undergo molecular, structural an...
Experience-dependent plasticity is the ability of brain circuits to undergo molecular, structural an...
Experience-dependent plasticity is the ability of brain circuits to undergo molecular, structural an...
Dynamic variations in DNA methylation regulate neuronal gene expression in an experience-dependent m...
Epigenomic settings control gene regulation in both developing and postmitotic tissue, whereas abnor...
Cytosine DNA methylation is a stable epigenetic modification with established roles in regulating tr...
Cytosine DNA methylation is a stable epigenetic modification with established roles in regulating tr...
Developmental processes, genes and environmental factors interact to produce changes in cognition an...
Developmental processes, genes and environmental factors interact to produce changes in cognition an...
Although all neurons carry the same genetic information, they vary considerably in morphology and fu...
Epigenetic mechanisms have emerged as a central process in learning and memory. Histone modification...
For the past 40 years, technological advances have made it possible to interrogate the entire genome...
During brain development there are periods, called critical or sensitive period, in which specific r...
This paper explores the current state of the field (2017) of the role that epigenetics plays in memo...
DNA methylation is implicated in mammalian brain development and plasticity underlying learning and ...
Experience-dependent plasticity is the ability of brain circuits to undergo molecular, structural an...
Experience-dependent plasticity is the ability of brain circuits to undergo molecular, structural an...
Experience-dependent plasticity is the ability of brain circuits to undergo molecular, structural an...
Dynamic variations in DNA methylation regulate neuronal gene expression in an experience-dependent m...
Epigenomic settings control gene regulation in both developing and postmitotic tissue, whereas abnor...
Cytosine DNA methylation is a stable epigenetic modification with established roles in regulating tr...
Cytosine DNA methylation is a stable epigenetic modification with established roles in regulating tr...
Developmental processes, genes and environmental factors interact to produce changes in cognition an...
Developmental processes, genes and environmental factors interact to produce changes in cognition an...
Although all neurons carry the same genetic information, they vary considerably in morphology and fu...
Epigenetic mechanisms have emerged as a central process in learning and memory. Histone modification...
For the past 40 years, technological advances have made it possible to interrogate the entire genome...
During brain development there are periods, called critical or sensitive period, in which specific r...
This paper explores the current state of the field (2017) of the role that epigenetics plays in memo...
DNA methylation is implicated in mammalian brain development and plasticity underlying learning and ...