Hepatocyte Nuclear Factor 4α (Nuclear Receptor 2A1) Is Essential for Maintenance of Hepatic Gene Expression and Lipid Homeostasis
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- 1 February 2001
- journal article
- research article
- Published by Taylor & Francis in Molecular and Cellular Biology
- Vol. 21 (4) , 1393-1403
- https://doi.org/10.1128/mcb.21.4.1393-1403.2001
Abstract
The numerous functions of the liver are controlled primarily at the transcriptional level by the concerted actions of a limited number of hepatocyte-enriched transcription factors (hepatocyte nuclear factor 1α [HNF1α], -1β, -3α, -3β, -3γ, -4α, and -6 and members of the c/ebp family). Of these, only HNF4α (nuclear receptor 2A1) and HNF1α appear to be correlated with the differentiated phenotype of cultured hepatoma cells. HNF1α-null mice are viable, indicating that this factor is not an absolute requirement for the formation of an active hepatic parenchyma. In contrast, HNF4α-null mice die during embryogenesis. Moreover, recent in vitro experiments using tetraploid aggregation suggest that HNF4α is indispensable for hepatocyte differentiation. However, the function of HNF4α in the maintenance of hepatocyte differentiation and function is less well understood. To address the function of HNF4α in the mature hepatocyte, a conditional gene knockout was produced using the Cre-loxP system. Mice lacking hepatic HNF4α expression accumulated lipid in the liver and exhibited greatly reduced serum cholesterol and triglyceride levels and increased serum bile acid concentrations. The observed phenotypes may be explained by (i) a selective disruption of very-low-density lipoprotein secretion due to decreased expression of genes encoding apolipoprotein B and microsomal triglyceride transfer protein, (ii) an increase in hepatic cholesterol uptake due to increased expression of the major high-density lipoprotein receptor, scavenger receptor BI, and (iii) a decrease in bile acid uptake to the liver due to down-regulation of the major basolateral bile acid transporters sodium taurocholate cotransporter protein and organic anion transporter protein 1. These data indicate that HNF4α is central to the maintenance of hepatocyte differentiation and is a major in vivo regulator of genes involved in the control of lipid homeostasis.Keywords
This publication has 77 references indexed in Scilit:
- Hepatocyte Nuclear Factor 3β (Foxa2) Is Dispensable for Maintaining the Differentiated State of the Adult HepatocyteMolecular and Cellular Biology, 2000
- Regulation of the Liver Fatty Acid Binding Protein Gene (L-FABP) by Hepatocyte NuclearFactor 1aplha: alterations in fatty acid homeostasis in HNF1alpha-deficient miceJournal of Biological Chemistry, 2000
- Transactivation of the Human Apolipoprotein CII Promoter by Orphan and Ligand-dependent Nuclear ReceptorsPublished by Elsevier ,1998
- A Short Proximal Promoter and the Distal Hepatic Control Region-1 (HCR-1) Contribute to the Liver Specificity of the Human Apolipoprotein C-II GenePublished by Elsevier ,1998
- The Hepatocyte Nuclear Factor 4 (HNF-4) Represses the Mitochondrial HMG-CoA Synthase GeneBiochemical and Biophysical Research Communications, 1998
- Substrate specificity of sinusoidal bile acid and organic anion uptake systems in rat and human liverHepatology, 1997
- Mutations in the hepatocyte nuclear factor-4α gene in maturity-onset diabetes of the young (MODY1)Nature, 1996
- Structure of the Hepatic Control Region of the Human Apolipoprotein E/C-I Gene LocusJournal of Biological Chemistry, 1995
- Fibrates increase human apolipoprotein A-II expression through activation of the peroxisome proliferator-activated receptor.Journal of Clinical Investigation, 1995
- Effects of fenofibrate on lipids, lipoproteins, and apolipoproteins in 33 subjects with primary hypercholesterolemiaAtherosclerosis, 1986