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Combined CETP- and hepatic-lipase-lowering gene variants raise HDL cholesterol but still increase coronary disease risk in the REGRESS trial (Atherosclerosis 2008)

Original title: High HDL cholesterol does not protect against coronary artery disease when associated with combined cholesteryl ester transfer protein and hepatic lipase gene variants

Atherosclerosis · · 7

van Acker BA, Botma GJ, Zwinderman AH, Kuivenhoven JA, Dallinga-Thie GM, Sijbrands EJ, Boer JM, Seidell JC, Jukema JW, Kastelein JJ, Jansen H, Verhoeven AJ et al.

This study tested whether CETP and hepatic lipase (HL) synergistically affect HDL-cholesterol and atherosclerotic risk, analyzing CETP Taq1B and LIPC -514C/T genotype frequencies in 792 male coronary artery disease (CAD) patients and 539 non-symptomatic controls from the REGRESS trial. While allele frequencies were similar between cases and controls, combined genotype occurrence differed (p=0.027): 1.3% of CAD patients versus 0.2% of controls had the CETP-B2B2/LIPC-TT genotype (p=0.033). The CETP-lowering B2 allele and HL-lowering LIPC-T allele synergistically raised HDL-cholesterol from 0.87 mmol/L in B1B1/CC carriers to 1.21 mmol/L in B2B2/TT carriers. B1B1/CC carriers had increased CAD risk (OR 1.4, p=0.025), but despite their high HDL-cholesterol, B2B2/TT carriers also had increased CAD risk (OR 3.7, p=0.033) and greater 2-year loss of coronary artery lumen diameter (0.34 vs 0.10 mm, p=0.044) than all other patients combined.

Read the paper (DOI)PubMed

Original abstract

Cholesteryl ester transfer protein (CETP) and hepatic lipase (HL) are two HDL modifying proteins that have both pro- and anti-atherogenic properties. We hypothesized that CETP and HL synergistically affect HDL cholesterol and atherosclerotic risk. To test our hypothesis, we analysed the genotype frequencies of CETP Taq1B (rs708272) and LIPC-514C/T (rs1800588) polymorphisms in male coronary artery disease patients (CAD; n=792) and non-symptomatic controls (n=539). Cases and controls had similar allele frequencies, but the occurrence of the combined genotypes differed (p=0.027). In CAD patients, 1.3% had the CETP-B2B2/LIPC-TT genotype, with only 0.2% in controls (p=0.033). The presence of the CETP lowering B2 allele and the HL lowering LIPC-T allele synergistically increased HDL cholesterol from 0.87+/-0.19 mmol/L in the B1B1/CC (n=183) to 1.21+/-0.25 mmol/L in the B2B2/TT carriers (n=10). The B1B1/CC carriers had an increased CAD risk (OR 1.4; p=0.025). Despite their high HDL cholesterol, the B2B2/TT individuals also had an increased CAD risk (OR 3.7; p=0.033). In a 2-year follow up, the loss of coronary artery lumen diameter in these patients was higher than in all other patients combined (0.34+/-0.70 versus 0.10+/-0.29 mm; p=0.044). We conclude that a high HDL cholesterol does not protect against coronary artery disease when associated with combined CETP- and HL-lowering gene variants.

geneticsHDL biology

Summary written by cetpinhibition.org from the published abstract; figures as published. Page updated 19 August 2026. Methods.