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REGRESS study haplotype analysis shows -629C/A, not TaqIB, drives CETP concentration and HDL-C (Hum Mol Genet 2003)

Original title: Haplotype analysis of the CETP gene: not TaqIB, but the closely linked -629C-->A polymorphism and a novel promoter variant are independently associated with CETP concentration

Hum Mol Genet · · 6

Klerkx AH, Tanck MW, Kastelein JJ, Molhuizen HO, Jukema JW, Zwinderman AH, Kuivenhoven JA

Because the association of the CETP TaqIB polymorphism with CETP concentration, HDL-C, and coronary artery disease was thought to reflect linkage with other functional variants, researchers analyzed TaqIB alongside four tightly linked polymorphisms (novel -2708G/A and +784CCC/A, and previously known -971G/A and -629C/A) in 709 men with coronary artery disease from the REGRESS study. All polymorphisms were associated with CETP concentration and HDL-C except -971 with HDL-C, but stepwise regression and haplotype analysis showed only -629 was independently associated with HDL-C, while -2708 and -629 were independently and cumulatively associated with CETP concentration. A 3-polymorphism haplotype model of -2708, -629, and -971 explained CETP concentration variation best, reflecting interaction effects between -971 and both -629 (P<0.001) and -2708 (P=0.047). The authors conclude TaqIB is not itself functionally instrumental but is a marker for the -629 promoter variant, with -2708 and -971 also likely contributing to CETP concentration.

Read the paper (DOI)PubMed

Original abstract

The TaqIB polymorphism in intron 1 of the cholesteryl ester transfer protein (CETP) gene is associated with plasma CETP concentration, high-density lipoprotein cholesterol (HDL-C) and coronary artery disease (CAD). These associations are generally thought to arise from linkage disequilibrium between TaqIB and (an)other functional polymorphism(s). To identify putative functional sites, we investigated phenotypic associations of TaqIB and four tightly linked polymorphisms (novel -2708G-->A and +784CCC-->A, and previously identified -971G-->A and -629C-->A) in 709 males with CAD (REGRESS). In addition to genotype analyses, a novel method to estimate haplotype effects was used to examine the individual and joint effects of these DNA variants on CETP concentration and HDL-C. All polymorphisms were associated with CETP concentration and HDL-C, except for -971 with HDL-C. Stepwise regression and haplotype analyses indicated that only -629 was independently associated with HDL-C. Similar analyses additionally indicated that -2708 and -629 were independently associated with CETP concentration, whereby the most frequent alleles acted in a cumulative manner. Nonetheless, detailed haplotype analysis revealed that a 3-polymorphism haplotype model consisting of -2708, -629 and -971 explained the variation in CETP concentration best. The involvement of -971 could be due to interaction effects that were observed between -971 and both -629 (P<0.001) and -2708 (P=0.047). In conclusion, the TaqIB polymorphism is not instrumental in determining CETP or HDL-C levels, but is a marker for the -629 promoter variant. Our analyses, furthermore, indicate that the -2708 and -971 polymorphisms are likely to play a role in determining CETP concentration.

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