1. Threshold levels of hepatocyte nuclear factor 6 (HNF-6) acting in synergy with HNF-4 and PGC-1alpha are required for time-specific gene expression during liver development.
- Author
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Beaudry JB, Pierreux CE, Hayhurst GP, Plumb-Rudewiez N, Weiss MC, Rousseau GG, and Lemaigre FP
- Subjects
- Animals, Base Sequence, Cell Differentiation, Cells, Cultured, Embryo, Mammalian embryology, Glucose-6-Phosphatase genetics, Hepatocyte Nuclear Factor 4 genetics, Hepatocyte Nuclear Factor 6 deficiency, Hepatocyte Nuclear Factor 6 genetics, Hepatocytes cytology, Hepatocytes enzymology, Humans, Mice, Mice, Knockout, Molecular Sequence Data, NIH 3T3 Cells, Peroxisome Proliferator-Activated Receptor Gamma Coactivator 1-alpha, Promoter Regions, Genetic genetics, Protein Binding, RNA, Messenger genetics, RNA, Messenger metabolism, Time Factors, Trans-Activators genetics, Transcription Factors, Gene Expression Regulation, Developmental, Hepatocyte Nuclear Factor 4 metabolism, Hepatocyte Nuclear Factor 6 metabolism, Liver embryology, Liver metabolism, Trans-Activators metabolism
- Abstract
During liver development, hepatocytes undergo a maturation process that leads to the fully differentiated state. This relies at least in part on the coordinated action of liver-enriched transcription factors (LETFs), but little is known about the dynamics of this coordination. In this context we investigate here the role of the LETF hepatocyte nuclear factor 6 (HNF-6; also called Onecut-1) during hepatocyte differentiation. We show that HNF-6 knockout mouse fetuses have delayed expression of glucose-6-phosphatase (g6pc), which catalyzes the final step of gluconeogenesis and is a late marker of hepatocyte maturation. Using a combination of in vivo and in vitro gain- and loss-of-function approaches, we demonstrate that HNF-6 stimulates endogenous g6pc gene expression directly via a synergistic and interdependent action with HNF-4 and that it involves coordinate recruitment of the coactivator PGC-1alpha. The expression of HNF-6, HNF-4, and PGC-1alpha rises steadily during liver development and precedes that of g6pc. We provide evidence that threshold levels of HNF-6 are required to allow synergism between HNF-6, HNF-4, and PGC-1alpha to induce time-specific expression of g6pc. Our observations on the regulation of g6pc by HNF-6 provide a model whereby synergism, interdependency, and threshold concentrations of LETFs and coactivators determine time-specific expression of genes during liver development.
- Published
- 2006
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