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cAMP response element binding protein H mediates fenofibrate-induced suppression of hepatic lipogenesis
1Division of Endocrinology and Metabolism, Department of Internal Medicine, Research Institute of Aging and Metabolism, WCU Program, Kyungpook National University School of Medicine, Daegu, South Korea.
Aims/Hypothesis:
Fenofibrate is a drug used to treat hyperlipidaemia that works by inhibiting hepatic triacylglycerol synthesis. Sterol regulatory element binding protein-1c (SREBP-1c) is a major regulator of the expression of genes involved in hepatic triacylglycerol synthesis. In addition, endoplasmic reticulum (ER)-bound transcription factor families are involved in the control of various metabolic pathways. Here, we show a novel function for an ER-bound transcription factor, cAMP response element binding protein H (CREBH), in fenofibrate-mediated inhibition of hepatic lipogenesis.
Methods:
The effects of fenofibrate and adenovirus-mediated Crebh (also known as Creb313) overexpression (Ad-Crebh) on hepatic SREBP-1c production and lipogenesis in vitro and in vivo were investigated. We also examined whether downregulation of endogenous hepatic Crebh by small interfering (si)RNA restores the fenofibrate effect on hepatic lipogenesis and SREBP-1c production. Finally, we examined the mechanism by which CREBH inhibits hepatic SREBP-1c production.
Results:
Fasting and fenofibrate treatment induced CREBH production and decreased SREBP-1c levels. Indeed, Ad-Crebh inhibited insulin- and liver X receptor agonist TO901317-induced Srebp-1c (also known as Srebf1) mRNA expression in cultured hepatocytes. Moreover, increased production of CREBH in the liver of mice following tail-vein injection of Ad-Crebh inhibited high-fat diet-induced hepatic steatosis through inhibition of Srebp-1c expression. The inhibition of endogenous Crebh expression by siRNA restored fenofibrate-induced suppression of Srebp-1c expression and hepatic lipid accumulation both in vitro and in vivo.
Conclusions/Interpretation:
These results show that fenofibrate decreases hepatic lipid synthesis through induction of CREBH. This study suggests CREBH as a novel negative regulator of SREBP-1c production and hepatic lipogenesis.
Insights
Fenofibrate reduces liver fat by increasing CREBH, a protein that inhibits SREBP-1c production. This discovery reveals CREBH as a key player in regulating liver lipogenesis and provides new insights into treating hyperlipidemia.
Area of Science:
- Molecular biology
- Metabolic pathways
- Lipid metabolism
Background:
- Fenofibrate is a hyperlipidemia drug inhibiting hepatic triacylglycerol synthesis.
- Sterol regulatory element binding protein-1c (SREBP-1c) regulates genes for hepatic triacylglycerol synthesis.
- Endoplasmic reticulum (ER)-bound transcription factors control metabolic pathways.
Purpose of the Study:
- Investigate the novel function of ER-bound transcription factor CREBH in fenofibrate-mediated inhibition of hepatic lipogenesis.
- Elucidate the mechanism by which CREBH affects SREBP-1c production and hepatic lipid synthesis.
Main Methods:
- Examined fenofibrate and CREBH overexpression effects on SREBP-1c and lipogenesis in vitro and in vivo.
- Utilized small interfering RNA (siRNA) to downregulate endogenous CREBH and assess its impact on fenofibrate's effects.
- Investigated the mechanism of CREBH-mediated inhibition of SREBP-1c production.
Main Results:
- Fasting and fenofibrate increased CREBH production and decreased SREBP-1c levels.
- CREBH overexpression inhibited SREBP-1c mRNA expression and reduced diet-induced hepatic steatosis in mice.
- siRNA-mediated inhibition of CREBH reversed fenofibrate's suppressive effects on SREBP-1c and lipid accumulation.
Conclusions:
- Fenofibrate decreases hepatic lipid synthesis via CREBH induction.
- CREBH acts as a novel negative regulator of SREBP-1c production and hepatic lipogenesis.
- This study highlights CREBH as a potential therapeutic target for metabolic disorders.
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