Endoplasmic reticulum-tethered transcription factor cAMP responsive element-binding protein, hepatocyte specific, regulates hepatic lipogenesis, fatty acid oxidation, and lipolysis upon metabolic stress in mice
Open Access
- 16 November 2011
- journal article
- research article
- Published by Wolters Kluwer Health in Hepatology
- Vol. 55 (4), 1070-1082
- https://doi.org/10.1002/hep.24783
Abstract
CAMP responsive element-binding protein, hepatocyte specific (CREBH), is a liver-specific transcription factor localized in the endoplasmic reticulum (ER) membrane. Our previous work demonstrated that CREBH is activated by ER stress or inflammatory stimuli to induce an acute-phase hepatic inflammation. Here, we demonstrate that CREBH is a key metabolic regulator of hepatic lipogenesis, fatty acid (FA) oxidation, and lipolysis under metabolic stress. Saturated FA, insulin signals, or an atherogenic high-fat diet can induce CREBH activation in the liver. Under the normal chow diet, CrebH knockout mice display a modest decrease in hepatic lipid contents, but an increase in plasma triglycerides (TGs). After having been fed an atherogenic high-fat (AHF) diet, massive accumulation of hepatic lipid metabolites and significant increase in plasma TG levels were observed in the CrebH knockout mice. Along with the hypertriglyceridemia phenotype, the CrebH null mice displayed significantly reduced body-weight gain, diminished abdominal fat, and increased nonalcoholic steatohepatitis activities under the AHF diet. Gene-expression analysis and chromatin-immunoprecipitation assay indicated that CREBH is required to activate the expression of the genes encoding functions involved in de novo lipogenesis, TG and cholesterol biosynthesis, FA elongation and oxidation, lipolysis, and lipid transport. Supporting the role of CREBH in lipogenesis and lipolysis, forced expression of an activated form of CREBH protein in the liver significantly increases accumulation of hepatic lipids, but reduces plasma TG levels in mice. Conclusion: All together, our study shows that CREBH plays a key role in maintaining lipid homeostasis by regulating the expression of the genes involved in hepatic lipogenesis, FA oxidation, and lipolysis under metabolic stress. The identification of CREBH as a stress-inducible metabolic regulator has important implications in the understanding and treatment of metabolic disease. (Hepatology 2012)This publication has 27 references indexed in Scilit:
- The transcription factor cyclic AMP–responsive element–binding protein H regulates triglyceride metabolismNature Medicine, 2011
- The liver-enriched transcription factor CREB-H is a growth suppressor protein underexpressed in hepatocellular carcinomaNucleic Acids Research, 2005
- Novel eicosanoid and docosanoid mediators: resolvins, docosatrienes, and neuroprotectinsCurrent Opinion in Clinical Nutrition and Metabolic Care, 2005
- ER stress signaling by regulated proteolysis of ATF6Methods, 2005
- Prostaglandin catabolizing enzymesProstaglandins & Other Lipid Mediators, 2002
- A proposed model for the assembly of chylomicronsAtherosclerosis, 2000
- Nonalcoholic Steatohepatitis: A Proposal for Grading and Staging The Histological LesionsAmerican Journal of Gastroenterology, 1999
- The SREBP Pathway: Regulation of Cholesterol Metabolism by Proteolysis of a Membrane-Bound Transcription FactorCell, 1997
- Quantitative assessment of atherosclerotic lesions in miceAtherosclerosis, 1987
- Hypertriglyceridemia Associated with Deficiency of Apolipoprotein C-IINew England Journal of Medicine, 1978