AbstractNeural stem cell (NSC) state and fate depend on spatially and temporally synchronized transcriptional and epigenetic regulation of the expression of extrinsic signaling factors and intrinsic cell-specific genes, but the functional roles for chromatin-modifying enzymes in neural differentiation remain poorly understood. Here we show that the histone demethylases KDM4A (JMJD2A) and KDM4C (JMJD2C) are essential for proper differentiation of NSCs in vitro and in vivo. KDM4A/C were required for neuronal differentiation, survival and expression of the neurotrophic signaling factor BDNF in association with promoter H3K9 demethylation and RNA polymerase II recruitment. Unexpectedly, KDM4A/C were essential for selective H3K36 demethylation a...
DNA methylation is a major epigenetic factor that has been postulated to regulate cell lineage diffe...
The epigenetic mechanisms that enable lifelong neurogenesis from neural stem cells (NSCs) in the adu...
SummaryHistone methylation regulates chromatin structure and transcription. The recently identified ...
AbstractNeural stem cell (NSC) state and fate depend on spatially and temporally synchronized transc...
SummaryThe functional organization of eukaryotic genomes correlates with specific patterns of histon...
The functional organization of eukaryotic genomes correlates with specific patterns of histone methy...
SummaryThe neural crest is a multipotent stem cell-like population that is induced during gastrulati...
The neural crest is a multipotent stem cell-like population that is induced during gastrulation, but...
Patterns of methylation at lysine 4 and 27 of histone H3 have been associated with states of gene ac...
Methylation of lysine residues in histone tails is an intensively studied epigenetic signal that reg...
AbstractBackgroundThe development of the nervous system is a highly organized process involving the ...
Epigenetic control of developmental genes has emerged as a key mechanism in the acquisition of devel...
SummaryThe epigenetic mechanisms that enable lifelong neurogenesis from neural stem cells (NSCs) in ...
Polycomb Repressive Complex 2 (PRC2) catalyzes histone H3 lysine 27 tri-methylation (H3K27me3), an e...
AbstractEpigenetic gene control is involved in mechanisms of development. Little is known about the ...
DNA methylation is a major epigenetic factor that has been postulated to regulate cell lineage diffe...
The epigenetic mechanisms that enable lifelong neurogenesis from neural stem cells (NSCs) in the adu...
SummaryHistone methylation regulates chromatin structure and transcription. The recently identified ...
AbstractNeural stem cell (NSC) state and fate depend on spatially and temporally synchronized transc...
SummaryThe functional organization of eukaryotic genomes correlates with specific patterns of histon...
The functional organization of eukaryotic genomes correlates with specific patterns of histone methy...
SummaryThe neural crest is a multipotent stem cell-like population that is induced during gastrulati...
The neural crest is a multipotent stem cell-like population that is induced during gastrulation, but...
Patterns of methylation at lysine 4 and 27 of histone H3 have been associated with states of gene ac...
Methylation of lysine residues in histone tails is an intensively studied epigenetic signal that reg...
AbstractBackgroundThe development of the nervous system is a highly organized process involving the ...
Epigenetic control of developmental genes has emerged as a key mechanism in the acquisition of devel...
SummaryThe epigenetic mechanisms that enable lifelong neurogenesis from neural stem cells (NSCs) in ...
Polycomb Repressive Complex 2 (PRC2) catalyzes histone H3 lysine 27 tri-methylation (H3K27me3), an e...
AbstractEpigenetic gene control is involved in mechanisms of development. Little is known about the ...
DNA methylation is a major epigenetic factor that has been postulated to regulate cell lineage diffe...
The epigenetic mechanisms that enable lifelong neurogenesis from neural stem cells (NSCs) in the adu...
SummaryHistone methylation regulates chromatin structure and transcription. The recently identified ...