HDL biology
Expressing simian CETP in Fisher rats cuts HDL cholesterol by 48%, selectively depleting large apoE-containing HDL1 particles by 74% (J Lipid Res 2002)
Original title: Expression of simian CETP in normolipidemic Fisher rats has a profound effect on large sized apoE-containing HDL
To investigate the direct effect of cholesteryl ester transfer protein (CETP) on HDL structure and composition in vivo, simian CETP was expressed in Fisher rats, which spontaneously display high plasma levels of HDL1. In the new CETP transgenic (CETPTg) rat line, hepatic production of active CETP produced a significant 48% decrease in plasma HDL cholesterol and a 34% decrease in total cholesterol (P < 0.01 for both). Among HDL subpopulations, the largest particles were most affected, with a 74% decrease in HDL1 versus a significantly smaller 38% decrease in HDL2 (P < 0.0001). Apolipoprotein E (apoE)-containing HDL1 were selectively affected by CETP expression, while HDL apoA content remained unmodified, and serum HDL apoE content fell by 53% (P < 0.02) in CETPTg rats, suggesting apoE in HDL determines its ability to interact with CETP.
Original abstract
In order to investigate the direct effect of cholesteryl ester transfer protein (CETP) on the structure and composition of HDL in vivo, simian CETP was expressed in Fisher rat that spontaneously displays high plasma levels of HDL1. In the new CETPTg rat line, the production of active CETP by the liver induced a significant 48% decrease in plasma HDL cholesterol, resulting in a 34% decrease in total cholesterol level (P < 0.01 in both cases). Among the various plasma HDL subpopulations, the largest HDL were those mostly affected by CETP, with a 74% decrease in HDL1 versus a significantly weaker 38% decrease in smaller HDL2 (P < 0.0001). Apolipoprotein E (apoE)-containing HDL1 were selectively affected by CETP expression, whereas apoA content of HDL remained unmodified. The reduction in the apoE content of serum HDL observed in CETPTg rats compared to controls (53%, P < 0.02) suggests that apoE in HDL may constitute in vivo a major determinant of their ability to interact with CETP. These results bring new insight into the lack of HDL1 in plasma from CETP-deficient heterozygotes despite their substantial 50% decrease in CETP activity. In addition, they indicate that HDL1 constitute reliable and practicable sensors of very low plasma CETP activity in vivo.
Summary written by cetpinhibition.org from the published abstract; figures as published. Page updated 19 August 2026. Methods.