How multiple epigenetic layers and transcription factors (TFs) interact to facilitate brain development is largely unknown. Here, to systematically map the regulatory landscape of neural differentiation in the mouse neocortex, we profiled gene expression and chromatin accessibility in single cells and integrated these data with measurements of enhancer activity, DNA methylation and three-dimensional genome architecture in purified cell populations. This allowed us to identify thousands of new enhancers, their predicted target genes and the temporal relationships between enhancer activation, epigenome remodeling and gene expression. We characterize specific neuronal transcription factors associated with extensive and frequently coordinated c...
Epigenetic changes, including histone modifications or chromatin remodeling are regulated by a large...
SummaryA key finding of the ENCODE project is that the enhancer landscape of mammalian cells undergo...
Mammalian brain cells show a remarkable diversity, yet the regulatory DNA landscape underlying this ...
How multiple epigenetic layers and transcription factors (TFs) interact to facilitate brain developm...
The generation of neocortical neurons from neural progenitor cells (NPCs) is primarily controlled by...
Mammalian brain cells show remarkable diversity in gene expression, anatomy and function, yet the re...
Spatiotemporal regulation of gene expression in multicellular organisms is mediated by cell-type spe...
<div><p>Genetic studies have identified a core set of transcription factors and target genes that co...
Epigenetic factors (EFs) regulate multiple aspects of cerebral cortex development, including prolife...
During neurogenesis, dynamic developmental cues, transcription factors and histone modifying enzymes...
Epigenetic factors (EFs) regulate multiple aspects of cerebral cortex development, including prolife...
Epigenetic factors (EFs) regulate multiple aspects of cerebral cortex development, including prolife...
Mutations in gene regulatory elements have been associated with a wide range of complex neuropsychia...
Epigenetic changes, including histone modifications or chromatin remodeling are regulated by a large...
<div><p>Epigenetic changes, including histone modifications or chromatin remodeling are regulated by...
Epigenetic changes, including histone modifications or chromatin remodeling are regulated by a large...
SummaryA key finding of the ENCODE project is that the enhancer landscape of mammalian cells undergo...
Mammalian brain cells show a remarkable diversity, yet the regulatory DNA landscape underlying this ...
How multiple epigenetic layers and transcription factors (TFs) interact to facilitate brain developm...
The generation of neocortical neurons from neural progenitor cells (NPCs) is primarily controlled by...
Mammalian brain cells show remarkable diversity in gene expression, anatomy and function, yet the re...
Spatiotemporal regulation of gene expression in multicellular organisms is mediated by cell-type spe...
<div><p>Genetic studies have identified a core set of transcription factors and target genes that co...
Epigenetic factors (EFs) regulate multiple aspects of cerebral cortex development, including prolife...
During neurogenesis, dynamic developmental cues, transcription factors and histone modifying enzymes...
Epigenetic factors (EFs) regulate multiple aspects of cerebral cortex development, including prolife...
Epigenetic factors (EFs) regulate multiple aspects of cerebral cortex development, including prolife...
Mutations in gene regulatory elements have been associated with a wide range of complex neuropsychia...
Epigenetic changes, including histone modifications or chromatin remodeling are regulated by a large...
<div><p>Epigenetic changes, including histone modifications or chromatin remodeling are regulated by...
Epigenetic changes, including histone modifications or chromatin remodeling are regulated by a large...
SummaryA key finding of the ENCODE project is that the enhancer landscape of mammalian cells undergo...
Mammalian brain cells show a remarkable diversity, yet the regulatory DNA landscape underlying this ...