HDL biology
CETP expression reverses the direction of PXR agonism effect on HDL cholesterol, turning an increase in mice into a dose-dependent decrease (Biochim Biophys Acta 2009)
Original title: PXR agonism decreases plasma HDL levels in ApoE3-Leiden.CETP mice
To evaluate the net effect of pregnane X receptor (PXR) agonism on HDL metabolism, female ApoE3-Leiden (E3L) and E3L.CETP mice, established models of human-like lipoprotein metabolism, were fed increasing amounts of the potent PXR agonist PCN. PCN increased liver lipids and plasma cholesterol and triglycerides in both models, but while it increased cholesterol in large HDL-1 particles in E3L mice, it dose-dependently decreased HDL cholesterol in E3L.CETP mice, indicating that cholesteryl ester transfer protein (CETP) expression dominates the effect of PCN on HDL metabolism. PCN decreased hepatic expression of genes involved in HDL synthesis, maturation, and clearance; the HDL-increasing effect seen in E3L mice, likely caused by decreased hepatic SR-BI protein, was completely reversed by CETP expression.
Original abstract
Pregnane X receptor (PXR) agonism has been shown to affect multiple steps in both the synthesis and catabolism of HDL, but its integrated effect on HDL metabolism in vivo remains unclear. The aim of this study was to evaluate the net effect of PXR agonism on HDL metabolism in ApoE3-Leiden (E3L) and E3L.CETP mice, well-established models for human-like lipoprotein metabolism. Female mice were fed a diet with increasing amounts of the potent PXR agonist 5-pregnen-3beta-ol-20-one-16alpha-carbonitrile (PCN). In E3L and E3L.CETP mice, PCN increased liver lipids as well as plasma cholesterol and triglycerides. However, whereas PCN increased cholesterol contained in large HDL-1 particles in E3L mice, it dose-dependently decreased HDL-cholesterol in E3L.CETP mice, indicating that CETP expression dominates the effect of PCN on HDL metabolism. Analysis of the hepatic expression of genes involved in HDL metabolism showed that PCN decreased expression of genes involved in HDL synthesis (Abca1, Apoa1), maturation (Lcat, Pltp) and clearance (Sr-b1). The HDL-increasing effect of PCN, observed in E3L mice, is likely caused by a marked decrease in hepatic SR-BI protein expression, and completely reversed by CETP expression. We conclude that chronic PXR agonism dose-dependently reduces plasma HDL-cholesterol in the presence of CETP.
Summary written by cetpinhibition.org from the published abstract; figures as published. Page updated 19 August 2026. Methods.