DNA methylation has emerged as a critical modulator of neuronal plasticity and cognitive function. Notwithstanding, the role of enzymes that demethylate DNA remain to be fully explored. Here, we report that loss of ten-eleven translocation methylcytosine dioxygenase 2 (Tet2), which catalyzes oxidation of 5-methylcytosine (5mC) to 5-hydroxymethylcytosine (5hmC), in adult neurons enhances cognitive function. In the adult mouse hippocampus, we detected an enrichment of Tet2 in neurons. Viral-mediated neuronal overexpression and RNA interference of Tet2 altered dendritic complexity and synaptic-plasticity-related gene expression in vitro. Overexpression of neuronal Tet2 in adult hippocampus, and loss of Tet2 in adult glutamatergic neurons,...
Active and dynamic DNA methylation in the hippocampus is essential for the formation, maintenance, a...
AbstractEpigenetic modifications of the genome play important roles in controlling gene transcriptio...
DNA hydroxylation catalyzed by Tet dioxygenases occurs abundantly in embryonic stem cells and neuron...
SummaryDynamic changes in 5-methylcytosine (5mC) have been implicated in the regulation of gene expr...
Restoring adult stem cell function provides an exciting approach for rejuvenating the aging brain. H...
Restoring adult stem cell function provides an exciting approach for rejuvenating the aging brain. H...
The ten-eleven translocation (Tet) family of methylcytosine dioxygenases catalyze oxidation of 5-met...
SummaryThe ten-eleven translocation (Tet) family of methylcytosine dioxygenases catalyze oxidation o...
Previous findings point to a consensus that altering DNA methylation in neurons involved in neuropla...
Every seven seconds an individual is diagnosed with dementia, 80% of which being specifically caused...
Memory is intimately tied to identity. This makes diseases that impact learning and memory particula...
DNA dioxygenases Ten-Eleven Translocation (TET) proteins can catalyze the conversion of 5-methylcyto...
AbstractA dynamic equilibrium between DNA methylation and demethylation of neuronal activity-regulat...
A dynamic equilibrium between DNA methylation and demethylation of neuronal activity-regulated genes...
SummaryDNA hydroxylation catalyzed by Tet dioxygenases occurs abundantly in embryonic stem cells and...
Active and dynamic DNA methylation in the hippocampus is essential for the formation, maintenance, a...
AbstractEpigenetic modifications of the genome play important roles in controlling gene transcriptio...
DNA hydroxylation catalyzed by Tet dioxygenases occurs abundantly in embryonic stem cells and neuron...
SummaryDynamic changes in 5-methylcytosine (5mC) have been implicated in the regulation of gene expr...
Restoring adult stem cell function provides an exciting approach for rejuvenating the aging brain. H...
Restoring adult stem cell function provides an exciting approach for rejuvenating the aging brain. H...
The ten-eleven translocation (Tet) family of methylcytosine dioxygenases catalyze oxidation of 5-met...
SummaryThe ten-eleven translocation (Tet) family of methylcytosine dioxygenases catalyze oxidation o...
Previous findings point to a consensus that altering DNA methylation in neurons involved in neuropla...
Every seven seconds an individual is diagnosed with dementia, 80% of which being specifically caused...
Memory is intimately tied to identity. This makes diseases that impact learning and memory particula...
DNA dioxygenases Ten-Eleven Translocation (TET) proteins can catalyze the conversion of 5-methylcyto...
AbstractA dynamic equilibrium between DNA methylation and demethylation of neuronal activity-regulat...
A dynamic equilibrium between DNA methylation and demethylation of neuronal activity-regulated genes...
SummaryDNA hydroxylation catalyzed by Tet dioxygenases occurs abundantly in embryonic stem cells and...
Active and dynamic DNA methylation in the hippocampus is essential for the formation, maintenance, a...
AbstractEpigenetic modifications of the genome play important roles in controlling gene transcriptio...
DNA hydroxylation catalyzed by Tet dioxygenases occurs abundantly in embryonic stem cells and neuron...