SummaryDynamic changes in 5-methylcytosine (5mC) have been implicated in the regulation of gene expression critical for consolidation of memory. However, little is known about how these changes in 5mC are regulated in the adult brain. The enzyme methylcytosine dioxygenase TET1 (TET1) has been shown to promote active DNA demethylation in the nervous system. Therefore, we took a viral-mediated approach to overexpress the protein in the hippocampus and examine its potential involvement in memory formation. We found that Tet1 is a neuronal activity-regulated gene and that its overexpression leads to global changes in modified cytosine levels. Furthermore, expression of TET1 or a catalytically inactive mutant (TET1m) resulted in the upregulation...
Active DNA modification is a major epigenetic mechanism that regulates gene expression in an experie...
DNA hydroxylation catalyzed by Tet dioxygenases occurs abundantly in embryonic stem cells and neuron...
Active and dynamic DNA methylation in the hippocampus is essential for the formation, maintenance, a...
SummaryDynamic changes in 5-methylcytosine (5mC) have been implicated in the regulation of gene expr...
SummaryThe ten-eleven translocation (Tet) family of methylcytosine dioxygenases catalyze oxidation o...
The ten-eleven translocation (Tet) family of methylcytosine dioxygenases catalyze oxidation of 5-met...
A dynamic equilibrium between DNA methylation and demethylation of neuronal activity-regulated genes...
AbstractA dynamic equilibrium between DNA methylation and demethylation of neuronal activity-regulat...
DNA methylation has emerged as a critical modulator of neuronal plasticity and cognitive function. N...
AbstractEpigenetic modifications of the genome play important roles in controlling gene transcriptio...
The dynamic nature of epigenetic DNA modifications is crucial for regulating gene expression in an e...
Previous findings point to a consensus that altering DNA methylation in neurons involved in neuropla...
5-hydroxymethylcytosine (5-hmC) is a novel DNA modification that is highly enriched in the adult bra...
Epigenetic mechanisms are critical regulators of gene expression underlying learning and memory form...
TET enzymes oxidize 5-methylcytosine (5mC) into 5-hydroxymethylcytosine (5hmC), a process thought to...
Active DNA modification is a major epigenetic mechanism that regulates gene expression in an experie...
DNA hydroxylation catalyzed by Tet dioxygenases occurs abundantly in embryonic stem cells and neuron...
Active and dynamic DNA methylation in the hippocampus is essential for the formation, maintenance, a...
SummaryDynamic changes in 5-methylcytosine (5mC) have been implicated in the regulation of gene expr...
SummaryThe ten-eleven translocation (Tet) family of methylcytosine dioxygenases catalyze oxidation o...
The ten-eleven translocation (Tet) family of methylcytosine dioxygenases catalyze oxidation of 5-met...
A dynamic equilibrium between DNA methylation and demethylation of neuronal activity-regulated genes...
AbstractA dynamic equilibrium between DNA methylation and demethylation of neuronal activity-regulat...
DNA methylation has emerged as a critical modulator of neuronal plasticity and cognitive function. N...
AbstractEpigenetic modifications of the genome play important roles in controlling gene transcriptio...
The dynamic nature of epigenetic DNA modifications is crucial for regulating gene expression in an e...
Previous findings point to a consensus that altering DNA methylation in neurons involved in neuropla...
5-hydroxymethylcytosine (5-hmC) is a novel DNA modification that is highly enriched in the adult bra...
Epigenetic mechanisms are critical regulators of gene expression underlying learning and memory form...
TET enzymes oxidize 5-methylcytosine (5mC) into 5-hydroxymethylcytosine (5hmC), a process thought to...
Active DNA modification is a major epigenetic mechanism that regulates gene expression in an experie...
DNA hydroxylation catalyzed by Tet dioxygenases occurs abundantly in embryonic stem cells and neuron...
Active and dynamic DNA methylation in the hippocampus is essential for the formation, maintenance, a...