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CETP expression amplifies hepatic cholesteryl ester and triglyceride accumulation from apoC-I deficiency by up to 302% in mice (J Lipid Res 2007)

Original title: Hepatic lipid accumulation in apolipoprotein C-I-deficient mice is potentiated by cholesteryl ester transfer protein

J Lipid Res · · 6

Gautier T, Tietge UJ, Boverhof R, Perton FG, Le Guern N, Masson D, Rensen PC, Havekes LM, Lagrost L, Kuipers F

Studying the impact of apolipoprotein C-I (apoC-I) deficiency on hepatic lipid metabolism with or without cholesteryl ester transfer protein (CETP), apoC-I-knockout mice showed a moderate reduction in plasma cholesterol alongside significant increases in hepatic cholesteryl ester (+58%) and triglyceride (+118%) content and biliary cholesterol concentration (+35%) compared with wild type. In the presence of CETP, these hepatic alterations from apoC-I deficiency were amplified, with hepatic cholesteryl ester and triglyceride levels increasing by up to 58% and 302%, respectively, in CETPTg/apoCIKO mice compared with CETPTg mice, alongside 88%, 77%, and 20% increases in biliary cholesterol, phospholipids, and bile acids. ApoC-I deficiency was not associated with altered VLDL production. The effect of apoC-I deficiency on hepatic lipid accumulation was therefore substantially greater when CETP boosted the alternate VLDL/LDL reverse cholesterol transport pathway.

Read the paper (DOI)PubMed

Original abstract

The impact of apolipoprotein C-I (apoC-I) deficiency on hepatic lipid metabolism was addressed in mice in the presence or the absence of cholesteryl ester transfer protein (CETP). In addition to the expected moderate reduction in plasma cholesterol levels, apoCIKO mice showed significant increases in the hepatic content of cholesteryl esters (+58%) and triglycerides (+118%) and in biliary cholesterol concentration (+35%) as compared with wild-type mice. In the presence of CETP, hepatic alterations resulting from apoC-I deficiency were enforced, with up to 58% and 302% increases in hepatic levels of cholesteryl esters and triglycerides in CETPTg/apoCIKO mice versus CETPTg mice, respectively. Biliary levels of cholesterol, phospholipids, and bile acids were increased by 88, 77, and 20%, respectively, whereas total cholesterol, HDL cholesterol, and triglyceride concentrations in plasma were further reduced in CETPTg/apoCIKO mice versus CETPTg mice. Finally, apoC-I deficiency was not associated with altered VLDL production rate. In line with the previously recognized inhibition of lipoprotein clearance by apoC-I, apoC-I deficiency led to decreased plasma lipid concentration, hepatic lipid accumulation, and increased biliary excretion of cholesterol. The effect was even greater when the alternate reverse cholesterol transport pathway via VLDL/LDL was boosted in the presence of CETP.

HDL biologymechanisms

Summary written by cetpinhibition.org from the published abstract; figures as published. Page updated 19 August 2026. Methods.