Activating germline mutations in STAT3 were recently identified as a cause of neonatal diabetes mellitus associated with beta-cell autoimmunity. We have investigated the effect of an activating mutation, STAT3(K392R), on pancreatic development using induced pluripotent stem cells (iPSCs) derived from a patient with neonatal diabetes and pancreatic hypoplasia. Early pancreatic endoderm differentiated similarly from STAT3(K392R) and healthy-control cells, but in later stages, NEUROG3 expression was upregulated prematurely in STAT3(K392R) cells together with insulin (INS) and glucagon (GCG). RNA sequencing (RNA-seq) showed robust NEUROG3 downstream targets upregulation. STAT3 mutation correction with CRISPR/Cas9 reversed completely the disease...
<div><p>The regulatory logic underlying global transcriptional programs controlling development of v...
Diabetes mellitus results in elevated blood glucose levels due to an insufficiency of the glucose lo...
In the context of type 1 diabetes research and the development of insulin-producing β-cell replaceme...
Activating germline mutations in STAT3 were recently identified as a cause of neonatal diabetes mell...
Summary: Activating germline mutations in STAT3 were recently identified as a cause of neonatal diab...
International audienceABSTRACT Objective Mice lacking the bHLH transcription factor (TF) Neurog3 do ...
OBJECTIVE: Mice lacking the bHLH transcription factor (TF) Neurog3 do not form pancreatic islet cell...
Diabetes is caused by a loss or dysfunction of insulin-producing pancreatic beta-cells. A potential ...
Naturally occurring cases of monogenic type 1 diabetes (T1D) help establish direct mechanisms drivin...
Summary: Permanent neonatal diabetes mellitus (PNDM) can be caused by insulin mutations. We generate...
Understanding transcriptional regulation of pancreatic development is required to advance current ef...
During pancreas development, endocrine precursors and their progeny differentiate, migrate, and clus...
We have used a previously unavailable model of pancreatic development, derived in vitro from human e...
SummaryUnderstanding transcriptional regulation of pancreatic development is required to advance cur...
The HNF1αp291fsinsC truncation is the most common mutation associated with maturity-onset diabetes o...
<div><p>The regulatory logic underlying global transcriptional programs controlling development of v...
Diabetes mellitus results in elevated blood glucose levels due to an insufficiency of the glucose lo...
In the context of type 1 diabetes research and the development of insulin-producing β-cell replaceme...
Activating germline mutations in STAT3 were recently identified as a cause of neonatal diabetes mell...
Summary: Activating germline mutations in STAT3 were recently identified as a cause of neonatal diab...
International audienceABSTRACT Objective Mice lacking the bHLH transcription factor (TF) Neurog3 do ...
OBJECTIVE: Mice lacking the bHLH transcription factor (TF) Neurog3 do not form pancreatic islet cell...
Diabetes is caused by a loss or dysfunction of insulin-producing pancreatic beta-cells. A potential ...
Naturally occurring cases of monogenic type 1 diabetes (T1D) help establish direct mechanisms drivin...
Summary: Permanent neonatal diabetes mellitus (PNDM) can be caused by insulin mutations. We generate...
Understanding transcriptional regulation of pancreatic development is required to advance current ef...
During pancreas development, endocrine precursors and their progeny differentiate, migrate, and clus...
We have used a previously unavailable model of pancreatic development, derived in vitro from human e...
SummaryUnderstanding transcriptional regulation of pancreatic development is required to advance cur...
The HNF1αp291fsinsC truncation is the most common mutation associated with maturity-onset diabetes o...
<div><p>The regulatory logic underlying global transcriptional programs controlling development of v...
Diabetes mellitus results in elevated blood glucose levels due to an insufficiency of the glucose lo...
In the context of type 1 diabetes research and the development of insulin-producing β-cell replaceme...