DNA hydroxylation catalyzed by Tet dioxygenases occurs abundantly in embryonic stem cells and neurons in mammals. However, its biological function in vivo is largely unknown. Here, we demonstrate that Tet1 plays an important role in regulating neural progenitor cell proliferation in adult mouse brain. Mice lacking Tet1 exhibit impaired hippocampal neurogenesis accompanied by poor learning and memory. In adult neural progenitor cells deficient in Tet1, a cohort of genes involved in progenitor proliferation were hypermethylated and downregulated. Our results indicate that Tet1 is positively involved in the epigenetic regulation of neural progenitor cell proliferation in the adult brain
TET enzymes oxidize 5-methylcytosine (5mC) into 5-hydroxymethylcytosine (5hmC), a process thought to...
Ten-eleven translocation (Tet) genes encode for a family of hydroxymethylase enzymes involved in reg...
<p>Understanding how genes affect behavior is critical to develop precise therapies for human behavi...
SummaryDNA hydroxylation catalyzed by Tet dioxygenases occurs abundantly in embryonic stem cells and...
DNA hydroxylation catalyzed by Tet dioxygenases occurs abundantly in embryonic stem cells and neuron...
Tet proteins and DNA demethylation are key regulators of embryonic stem cells, but their roles in de...
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...
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...
SummaryDynamic changes in 5-methylcytosine (5mC) have been implicated in the regulation of gene expr...
DNA methylation has emerged as a critical modulator of neuronal plasticity and cognitive function. N...
The ten-eleven translocation (Tet) family of methylcytosine dioxygenases catalyze oxidation of 5-met...
DNA dioxygenases Ten-Eleven Translocation (TET) proteins can catalyze the conversion of 5-methylcyto...
SummaryThe ten-eleven translocation (Tet) family of methylcytosine dioxygenases catalyze oxidation o...
TET enzymes oxidize 5-methylcytosine (5mC) into 5-hydroxymethylcytosine (5hmC), a process thought to...
Ten-eleven translocation (Tet) genes encode for a family of hydroxymethylase enzymes involved in reg...
<p>Understanding how genes affect behavior is critical to develop precise therapies for human behavi...
SummaryDNA hydroxylation catalyzed by Tet dioxygenases occurs abundantly in embryonic stem cells and...
DNA hydroxylation catalyzed by Tet dioxygenases occurs abundantly in embryonic stem cells and neuron...
Tet proteins and DNA demethylation are key regulators of embryonic stem cells, but their roles in de...
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...
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...
SummaryDynamic changes in 5-methylcytosine (5mC) have been implicated in the regulation of gene expr...
DNA methylation has emerged as a critical modulator of neuronal plasticity and cognitive function. N...
The ten-eleven translocation (Tet) family of methylcytosine dioxygenases catalyze oxidation of 5-met...
DNA dioxygenases Ten-Eleven Translocation (TET) proteins can catalyze the conversion of 5-methylcyto...
SummaryThe ten-eleven translocation (Tet) family of methylcytosine dioxygenases catalyze oxidation o...
TET enzymes oxidize 5-methylcytosine (5mC) into 5-hydroxymethylcytosine (5hmC), a process thought to...
Ten-eleven translocation (Tet) genes encode for a family of hydroxymethylase enzymes involved in reg...
<p>Understanding how genes affect behavior is critical to develop precise therapies for human behavi...