AbstractTo contribute to devise successful beta-cell differentiation strategies for the cure of Type 1 diabetes we sought to uncover barriers that restrict endocrine fate acquisition by studying the role of the transcriptional repressor REST in the developing pancreas. Rest expression is prevented in neurons and in endocrine cells, which is necessary for their normal function. During development, REST represses a subset of genes in the neuronal differentiation program and Rest is down-regulated as neurons differentiate. Here, we investigate the role of REST in the differentiation of pancreatic endocrine cells, which are molecularly close to neurons. We show that Rest is widely expressed in pancreas progenitors and that it is down-regulated ...
Mature pancreatic cells develop during embryonic life from endodermal progenitors, and this developm...
REST (RE1 silencing transcription factor), also known as NRSF (neuron-restrictive silencer factor), ...
Diabetes is caused by a loss or dysfunction of insulin-producing pancreatic beta-cells. A potential ...
AbstractTo contribute to devise successful beta-cell differentiation strategies for the cure of Type...
Multiple transcription factors have been shown to promote pancreatic β-cell differentiation, yet muc...
To contribute to devise successful beta-cell differentiation strategies for the cure of Type 1 diabe...
Beta cells are defined by the genes they express, many of which are specific to this cell type, and ...
The transcriptional repressor RE1 silencer transcription factor (REST) is an important factor that r...
The terminal differentiation of neuronal and pancreatic beta-cells requires the specific expression ...
AIMS/HYPOTHESIS: The expression of several neuronal genes in pancreatic beta cells is due to the abs...
AbstractThe transcriptional repressor RE1 silencer transcription factor (REST) is an important facto...
<div><p>The absence of the transcriptional repressor RE-1 Silencing Transcription Factor (REST) in i...
The absence of the transcriptional repressor RE-1 Silencing Transcription Factor (REST) in insulin-s...
The absence of the transcriptional repressor RE-1 Silencing Transcription Factor (REST) in insulin-s...
An important aim of Type I diabetes therapeutic strategies is the replenishment of functional beta c...
Mature pancreatic cells develop during embryonic life from endodermal progenitors, and this developm...
REST (RE1 silencing transcription factor), also known as NRSF (neuron-restrictive silencer factor), ...
Diabetes is caused by a loss or dysfunction of insulin-producing pancreatic beta-cells. A potential ...
AbstractTo contribute to devise successful beta-cell differentiation strategies for the cure of Type...
Multiple transcription factors have been shown to promote pancreatic β-cell differentiation, yet muc...
To contribute to devise successful beta-cell differentiation strategies for the cure of Type 1 diabe...
Beta cells are defined by the genes they express, many of which are specific to this cell type, and ...
The transcriptional repressor RE1 silencer transcription factor (REST) is an important factor that r...
The terminal differentiation of neuronal and pancreatic beta-cells requires the specific expression ...
AIMS/HYPOTHESIS: The expression of several neuronal genes in pancreatic beta cells is due to the abs...
AbstractThe transcriptional repressor RE1 silencer transcription factor (REST) is an important facto...
<div><p>The absence of the transcriptional repressor RE-1 Silencing Transcription Factor (REST) in i...
The absence of the transcriptional repressor RE-1 Silencing Transcription Factor (REST) in insulin-s...
The absence of the transcriptional repressor RE-1 Silencing Transcription Factor (REST) in insulin-s...
An important aim of Type I diabetes therapeutic strategies is the replenishment of functional beta c...
Mature pancreatic cells develop during embryonic life from endodermal progenitors, and this developm...
REST (RE1 silencing transcription factor), also known as NRSF (neuron-restrictive silencer factor), ...
Diabetes is caused by a loss or dysfunction of insulin-producing pancreatic beta-cells. A potential ...