Summary: Organ formation and maintenance depends on slowly self-renewing stem cells that supply an intermediate population of rapidly dividing progenitors, but how this proliferative hierarchy is regulated is unknown. By performing genome-wide single-cell and functional analyses in the cortex, we demonstrate that reduced Sox2 expression is a key regulatory signature of the transition between stem cells and rapidly dividing progenitors. In stem cells, Sox2 is expressed at high levels, which enables its repression of proproliferative genes, of which Cyclin D1 is the most potent target. Sox2 confers this function through binding to low-affinity motifs, which facilitate the recruitment of Gro/Tle corepressors in synergy with Tcf/Lef proteins. U...
<div><p>The self-renewal and pluripotency of embryonic stem cells (ESC) is regulated by a highly int...
The self-renewal and pluripotency of embryonic stem cells (ESC) is regulated by a highly integrated ...
SummarySox2 is an important transcriptional regulator in embryonic and adult stem cells [1–4]. Recen...
SummaryOrgan formation and maintenance depends on slowly self-renewing stem cells that supply an int...
SummaryOrgan formation and maintenance depends on slowly self-renewing stem cells that supply an int...
Summary. The SOX (Sry-related HMG box) proteins comprise a group of transcription factors that act a...
<div><p>Stem cells are defined by their capacities to self-renew and generate progeny of multiple li...
The Sox2 transcription factor is necessary for the long-term self-renewal of neural stem cells (NSCs...
SummaryThe mechanisms through which cell-cycle control and cell-fate decisions are coordinated in pr...
Stem cells are defined by their capacities to self-renew and generate progeny of multiple lineages. ...
SummaryThe mechanisms through which cell-cycle control and cell-fate decisions are coordinated in pr...
AbstractNeural progenitors of the vertebrate CNS are defined by generic cellular characteristics, in...
Sox2 is known to be important for neuron formation, but the precise mechanism through which it activ...
AbstractThe mammalian neocortex is established from neural stem and progenitor cells that utilize sp...
SOX2 is a master regulator of both pluripotent embryonic stem cells (ESCs) and multipotent neural pr...
<div><p>The self-renewal and pluripotency of embryonic stem cells (ESC) is regulated by a highly int...
The self-renewal and pluripotency of embryonic stem cells (ESC) is regulated by a highly integrated ...
SummarySox2 is an important transcriptional regulator in embryonic and adult stem cells [1–4]. Recen...
SummaryOrgan formation and maintenance depends on slowly self-renewing stem cells that supply an int...
SummaryOrgan formation and maintenance depends on slowly self-renewing stem cells that supply an int...
Summary. The SOX (Sry-related HMG box) proteins comprise a group of transcription factors that act a...
<div><p>Stem cells are defined by their capacities to self-renew and generate progeny of multiple li...
The Sox2 transcription factor is necessary for the long-term self-renewal of neural stem cells (NSCs...
SummaryThe mechanisms through which cell-cycle control and cell-fate decisions are coordinated in pr...
Stem cells are defined by their capacities to self-renew and generate progeny of multiple lineages. ...
SummaryThe mechanisms through which cell-cycle control and cell-fate decisions are coordinated in pr...
AbstractNeural progenitors of the vertebrate CNS are defined by generic cellular characteristics, in...
Sox2 is known to be important for neuron formation, but the precise mechanism through which it activ...
AbstractThe mammalian neocortex is established from neural stem and progenitor cells that utilize sp...
SOX2 is a master regulator of both pluripotent embryonic stem cells (ESCs) and multipotent neural pr...
<div><p>The self-renewal and pluripotency of embryonic stem cells (ESC) is regulated by a highly int...
The self-renewal and pluripotency of embryonic stem cells (ESC) is regulated by a highly integrated ...
SummarySox2 is an important transcriptional regulator in embryonic and adult stem cells [1–4]. Recen...