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p/CAF modulates the activity of the transcription factor p48/Ptf1a involved in pancreatic acinar differentiation
Annie Rodolosse1, Maria-Luisa Campos, Ilse Rooman
1Departament de Ciències Experimentals i de la Salut, Universitat Pompeu Fabra, Doctor Aiguader 88, 08003 Barcelona, Spain.
Insights
Pancreas-specific transcription factor 1a (p48) activates exocrine pancreas development. The cofactor p/CAF acetylates p48, enhancing its transcriptional activity for acinar differentiation.
Area of Science:
- Molecular Biology
- Developmental Biology
- Gene Regulation
Background:
- p48 (Ptf1a) is a crucial transcription factor for exocrine pancreas development and acinar cell differentiation.
- The PTF1 complex, comprising p48, RBP-L, and a class A bHLH protein, drives expression of digestive enzymes.
- Mechanisms of PTF1-dependent gene activation remain incompletely understood.
Purpose of the Study:
- To elucidate the mechanisms by which p48 mediates PTF1-dependent gene activation.
- To investigate the role of the cofactor p/CAF in p48 transcriptional activity.
- To determine the impact of p/CAF-mediated p48 acetylation on pancreatic gene expression.
Main Methods:
- In vivo interaction studies between p48 and p/CAF in acinar cells.
- Chromatin immunoprecipitation to assess p/CAF association with target gene promoters.
- Site-directed mutagenesis (K200R) to evaluate the role of p48 acetylation.
Main Results:
- p/CAF interacts with p48 in acinar cells and associates with PTF1 target gene promoters.
- p/CAF enhances p48 transactivation activity, promoting nuclear accumulation and Lys(200) acetylation.
- Acetylation at Lys(200) is essential for p48's transcriptional activity and cooperation with RBP-L.
Conclusions:
- p/CAF-mediated acetylation of p48 at Lys(200) is critical for PTF1-dependent gene activation.
- This acetylation is specifically required for activating acinar differentiation gene expression.
- p/CAF plays a selective role in regulating PTF1 activity during pancreatic development.
Abstract:
p48, also called Ptf1a (pancreas-specific transcription factor 1a), is a tissue-restricted bHLH (basic helix loop helix) transcription factor which is critical for pancreatic commitment during development and for the activation and maintenance of the acinar differentiation programme in the exocrine pancreas. High-level expression of exocrine digestive enzymes, a hallmark of mature acinar cells, depends largely on the trimeric complex PTF1, formed by p48, RBP-L (recombination signal-binding protein 1-like) and a class A bHLH protein. In addition, p48 induces cell-cycle exit by controlling G(1)/S-phase progression. However, the mechanisms that mediate PTF1-dependent gene activation are poorly understood. In the present study, we report that p48 increases transcription through two activation domains located in its N-terminal region by recruiting transcriptional co-activators. The histone acetyltransferase cofactor p/CAF {p300/CBP [CREB (cAMP-response-element-binding protein)-binding protein]-associated factor} interacts with p48 in acinar cells in vivo and is associated with the promoter region of acinar genes targeted by the PTF1 complex. p/CAF potentiates PTF1 transcriptional activity by enhancing selectively the p48 transactivation activity. p/CAF promotes the nuclear accumulation of p48 and its in vivo acetylation in Lys(200). The K200R mutation abolishes the transcriptional activity of p48, as well as its capacity to functionally co-operate with RBP-L to ensure effective PTF1-driven transcription, indicating that p/CAF-mediated acetylation of p48 is required for the full transcriptional activity of PTF1. In contrast, p/CAF did not co-operate with p48 in its growth regulatory effects. These results support a critical and selective role of p/CAF in PTF1-dependent gene activation during acinar differentiation.
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