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Diabetologia ; 55(10): 2713-2722, 2012 Oct.
Article in English | MEDLINE | ID: mdl-22760788

ABSTRACT

AIMS/HYPOTHESIS: Pancreatic cell development is a tightly controlled process. Although information is available regarding the mesodermal signals that control pancreatic development, little is known about the role of environmental factors such as nutrients, including glucose, on pancreatic development. We previously showed that glucose and its metabolism through the hexosamine biosynthesis pathway (HBP) promote pancreatic endocrine cell differentiation. Here, we analysed the role of the transcription factor carbohydrate-responsive element-binding protein (ChREBP) in this process. This transcription factor is activated by glucose, and has been recently described as a target of the HBP. METHODS: We used an in vitro bioassay in which pancreatic endocrine and exocrine cells develop from rat embryonic pancreas in a way that mimics in vivo pancreatic development. Using this model, gain-of-function and loss-of-function experiments were undertaken. RESULTS: ChREBP was produced in the endocrine lineage during pancreatic development, its abundance increasing with differentiation. When rat embryonic pancreases were cultured in the presence of glucose or xylitol, the production of ChREBP targets was induced. Concomitantly, beta cell differentiation was enhanced. On the other hand, when embryonic pancreases were cultured with inhibitors decreasing ChREBP activity or an adenovirus producing a dominant-negative ChREBP, beta cell differentiation was reduced, indicating that ChREBP activity was necessary for proper beta cell differentiation. Interestingly, adenovirus producing a dominant-negative ChREBP also reduced the positive effect of N-acetylglucosamine, a substrate of the HBP acting on beta cell differentiation. CONCLUSIONS/INTERPRETATION: Our work supports the idea that glucose, through the transcription factor ChREBP, controls beta cell differentiation from pancreatic progenitors.


Subject(s)
Basic Helix-Loop-Helix Leucine Zipper Transcription Factors/drug effects , Basic Helix-Loop-Helix Leucine Zipper Transcription Factors/physiology , Cell Differentiation/drug effects , Glucose/pharmacology , Insulin-Secreting Cells/cytology , Acetylglucosamine/pharmacology , Animals , Cell Differentiation/physiology , Cells, Cultured , Female , In Vitro Techniques , Models, Animal , Pancreas/cytology , Pancreas/embryology , Pancreas/physiology , Pregnancy , Rats , Rats, Wistar , Xylitol/pharmacology
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