Genetics
Meta-analysis of over 10,000 people confirms both CETP TaqIB and I405V variants significantly raise HDL cholesterol (J Lipid Res 2003)
Original title: Natural genetic variation as a tool in understanding the role of CETP in lipid levels and disease
This review examines how genetic studies of CETP variants and CETP-deficient families have contributed to understanding the role of CETP in modulating HDL levels and cardiovascular disease, a topic long debated since the discovery of the protein, noting that individual study results have often been disparate. Applying meta-analysis across the most broadly studied polymorphism, TaqIB, for which over 10,000 individuals had been genotyped with HDL levels determined, B2B2 homozygotes were found to have significantly higher HDL levels than B1B1 homozygotes (0.12 mmol/L, 95% CI 0.11-0.13, P less than 0.0001). A similar meta-analysis of the I405V polymorphism found 405VV homozygotes had 0.05 mmol/L higher HDL levels than 405II homozygotes (95% CI 0.03-0.07, P less than 0.0001). The review then addresses the implications of these consistent genetic findings for understanding the role of CETP in cardiovascular disease.
Original abstract
Since the identification of cholesteryl ester transfer protein (CETP), its role in the modulation of HDL levels and cardiovascular disease has been debated. With the early detection of genetic variants followed by the finding of families deficient in CETP, genetic studies have played a large role in the attempts to understand the association of CETP with lipids and disease; however, results of these studies have often led to disparate conclusions. With the availability of a greater variety of genetic polymorphisms and larger studies in which disease has been examined, it is now possible to compare the breadth of CETP genetic studies and draw better conclusions. The most broadly studied polymorphism is TaqIB for which over 10,000 individuals have been genotyped and had HDL levels determined. When these studies are subjected to a meta-analysis, the B2B2 homozygotes are found to have higher HDL levels than B1B1 homozygotes (0.12 mmol/l, 95% CI = 0.11-0.13, P < 0.0001). A similar analysis of the I405V polymorphism yields 0.05 mmol/l higher HDL levels in 405VV homozygotes than in 405II homozygotes (95% CI = 0.03-0.07, P < 0.0001). The implications of these studies for cardiovascular disease will be addressed.
Summary written by cetpinhibition.org from the published abstract; figures as published. Page updated 19 August 2026. Methods.