Epigenetic changes are thought to lead to alterations in the property of cells, such as differentiation potential. Neural precursor cells (NPCs) differentiate only into neurons in the midgestational brain, yet they become able to generate astrocytes in the late stage of development. This differentiation-potential switch could be explained by epigenetic changes, since the promoters of astrocyte-specific marker genes, glial fibrillary acidic protein (Gfap) and S100b, have been shown to become demethylated in late-stage NPCs prior to the onset of astrocyte differentiation; however, whether demethylation occurs generally in other astrocyctic genes remains unknown. Here we analyzed DNA methylation changes in mouse NPCs between the mid-(E11.5) an...
Epigenetic modifications regulate key transitions in cell fate during development of the central ner...
Astrocytes have functions crucial for brain homeostasis, which are disrupted in many neurological di...
SummaryDuring midgestation, mammalian neural precursor cells (NPCs) differentiate only into neurons....
Epigenetic changes are thought to lead to alterations in the property of cells, such as differentiat...
AbstractAstrocyte differentiation, which occurs late in brain development, is largely dependent on t...
AbstractAstrocytes are generated from neuroepithelial cells after neurons during brain development. ...
DNA methylation is a major epigenetic factor that has been postulated to regulate cell lineage diffe...
Astrocytes have numerous important roles in the developing and mature nervous system, including syna...
Cellular differentiation involves widespread epigenetic reprogramming, including modulation of DNA m...
AbstractNeural stem cell (NSC) state and fate depend on spatially and temporally synchronized transc...
Astrocytes play a significant role in coordinating neural development and provide critical support f...
The potential use of human embryonic stem cells (hESCs) in cell-based therapies points out the criti...
The generation of neocortical neurons from neural progenitor cells (NPCs) is primarily controlled by...
ZFP57 is required to maintain the germline-marked differential methylation at imprinting control reg...
DNA methylation is implicated in mammalian brain development and plasticity underlying learning and ...
Epigenetic modifications regulate key transitions in cell fate during development of the central ner...
Astrocytes have functions crucial for brain homeostasis, which are disrupted in many neurological di...
SummaryDuring midgestation, mammalian neural precursor cells (NPCs) differentiate only into neurons....
Epigenetic changes are thought to lead to alterations in the property of cells, such as differentiat...
AbstractAstrocyte differentiation, which occurs late in brain development, is largely dependent on t...
AbstractAstrocytes are generated from neuroepithelial cells after neurons during brain development. ...
DNA methylation is a major epigenetic factor that has been postulated to regulate cell lineage diffe...
Astrocytes have numerous important roles in the developing and mature nervous system, including syna...
Cellular differentiation involves widespread epigenetic reprogramming, including modulation of DNA m...
AbstractNeural stem cell (NSC) state and fate depend on spatially and temporally synchronized transc...
Astrocytes play a significant role in coordinating neural development and provide critical support f...
The potential use of human embryonic stem cells (hESCs) in cell-based therapies points out the criti...
The generation of neocortical neurons from neural progenitor cells (NPCs) is primarily controlled by...
ZFP57 is required to maintain the germline-marked differential methylation at imprinting control reg...
DNA methylation is implicated in mammalian brain development and plasticity underlying learning and ...
Epigenetic modifications regulate key transitions in cell fate during development of the central ner...
Astrocytes have functions crucial for brain homeostasis, which are disrupted in many neurological di...
SummaryDuring midgestation, mammalian neural precursor cells (NPCs) differentiate only into neurons....