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Molecular genetics reveals CETP as both anti-atherogenic in human deficiency and pro-atherogenic when overexpressed in mice (J Intern Med 1995)

Original title: Plasma cholesteryl ester transfer protein and high-density lipoproteins: new insights from molecular genetic studies

J Intern Med · · 6

Tall AR

This review synthesizes transgenic-mouse and human genetic evidence on CETP's dual role in HDL metabolism and atherosclerosis. Following discovery of the intron 14 CETP splicing defect, new CETP gene mutations including an exon 15 missense change from aspartate to glycine at amino acid 442 have been found across Japanese and other populations, common enough to meaningfully influence HDL levels at a population level. Transgenic mouse studies show CETP expression lowers HDL cholesterol, with its effects on apoA-I content and particle size further modulated by co-expression of human apoA-I, apoC-III, or apoA-II transgenes. While human genetic CETP deficiency appears anti-atherogenic, high-level CETP expression in transgenic mice accelerates atherosclerosis, illustrating that CETP's net effect on cardiovascular risk depends critically on genetic and metabolic context.

Read the paper (DOI)PubMed

Original abstract

Recent studies in transgenic mice provide strong evidence for a direct anti-atherogenic role of high-density lipoproteins (HDL) and highlight the importance of multiple gene interactions in the regulation of HDL levels. Plasma lipid transfer processes mediated by cholesteryl ester transfer protein (CETP) have a major impact on HDL levels, as revealed in studies of human genetic CETP deficiency and CETP transgenic mice. Subsequent to the discovery of an intron 14 CETP gene splicing defect, several new CETP gene mutations have been discovered recently in Japanese and other populations. One of these is an exon 15 missense mutation, changing amino acid 442 of CETP from aspartate to glycine. Population studies in Japan indicate that CETP gene mutations are sufficiently common to have a significant influence on HDL levels in the general population. Studies in transgenic mice show that CETP expression results in decreased levels of HDL cholesterol, but that the effects of CETP on HDL apolipoprotein A-I (apoA-I) content and size show important modulation by co-expression with transgenes encoding human apoA-I, apoC-III and apoA-II. In addition to the apparent antiatherogenic phenotype of human genetic CETP deficiency, high level expression of CETP in transgenic mice leads to accelerated atherosclerosis, illustrating the pro-atherogenic potential of CETP expression.

geneticsHDL biologymechanisms

Summary written by cetpinhibition.org from the published abstract; figures as published. Page updated 18 August 2026. Methods.