SummaryThe generation of neurons from neural stem cells requires large-scale changes in gene expression that are controlled to a large extent by proneural transcription factors, such as Ascl1. While recent studies have characterized the differentiation genes activated by proneural factors, less is known on the mechanisms that suppress progenitor cell identity. Here, we show that Ascl1 induces the transcription factor MyT1 while promoting neuronal differentiation. We combined functional studies of MyT1 during neurogenesis with the characterization of its transcriptional program. MyT1 binding is associated with repression of gene transcription in neural progenitor cells. It promotes neuronal differentiation by counteracting the inhibitory act...
Direct conversion of nonneural cells to functional neurons holds great promise for neurological dise...
In the developing nervous system, differentiating neurons express Delta and activate Notch signaling...
Abstract During cellular specification, transcription factors orchestrate cellular decisions through...
The generation of neurons from neural stem cells requires large-scale changes in gene expression tha...
SummaryThe generation of neurons from neural stem cells requires large-scale changes in gene express...
Neurogenesis is a cell differentiation program in which neural stem cells undergo extensive and pre...
Proneural transcription factors (TFs) such as Ascl1 function as master regulators of neurogenesis in...
SummaryThe proneural transcription factor Ascl1 coordinates gene expression in both proliferating an...
The proneural transcription factor Ascl1 coordinates gene expression in both proliferating and diffe...
The proneural transcription factor Ascl1 coordinates gene expression in both proliferating and diffe...
Normal differentiation and induced reprogramming require the activation of target cell programs and ...
Proneural genes such as Ascl1 are known to promote cell cycle exit and neuronal differentiation when...
Activation of Notch1 signaling in neural progenitor cells (NPCs) induces self-renewal and inhibits n...
SummaryDirect conversion of nonneural cells to functional neurons holds great promise for neurologic...
12 páginas, 7 figurasDevelopmental programs that generate the astonishing neuronal diversity of the ...
Direct conversion of nonneural cells to functional neurons holds great promise for neurological dise...
In the developing nervous system, differentiating neurons express Delta and activate Notch signaling...
Abstract During cellular specification, transcription factors orchestrate cellular decisions through...
The generation of neurons from neural stem cells requires large-scale changes in gene expression tha...
SummaryThe generation of neurons from neural stem cells requires large-scale changes in gene express...
Neurogenesis is a cell differentiation program in which neural stem cells undergo extensive and pre...
Proneural transcription factors (TFs) such as Ascl1 function as master regulators of neurogenesis in...
SummaryThe proneural transcription factor Ascl1 coordinates gene expression in both proliferating an...
The proneural transcription factor Ascl1 coordinates gene expression in both proliferating and diffe...
The proneural transcription factor Ascl1 coordinates gene expression in both proliferating and diffe...
Normal differentiation and induced reprogramming require the activation of target cell programs and ...
Proneural genes such as Ascl1 are known to promote cell cycle exit and neuronal differentiation when...
Activation of Notch1 signaling in neural progenitor cells (NPCs) induces self-renewal and inhibits n...
SummaryDirect conversion of nonneural cells to functional neurons holds great promise for neurologic...
12 páginas, 7 figurasDevelopmental programs that generate the astonishing neuronal diversity of the ...
Direct conversion of nonneural cells to functional neurons holds great promise for neurological dise...
In the developing nervous system, differentiating neurons express Delta and activate Notch signaling...
Abstract During cellular specification, transcription factors orchestrate cellular decisions through...