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CETP TaqB1B1 genotype linked to higher LDL cholesterol in Chinese coronary heart disease patients (Chin Med J (Engl) 2004)

Original title: Association between cholesteryl ester transfer protein gene polymorphisms and variations in lipid levels in patients with coronary heart disease

Chin Med J (Engl) · · 6

Zheng KQ, Zhang SZ, He Y, Zhang L, Zhang KL, Huang DJ, Sun Y

Genotyping CETP TaqB, MspI, and I405V polymorphisms in 203 coronary heart disease (CHD) patients and 100 controls, allele and genotype frequencies did not differ between groups, but the TaqB1B1 genotype was associated with significantly higher total cholesterol (P=0.039) and LDL-cholesterol (P=0.044) than B2B2 in CHD patients, and higher LDL-cholesterol (P=0.034) than B2B2 in controls. I405V homozygotes had significantly higher HDL-cholesterol than VV homozygotes among controls (P=0.023). Among male CHD patients with clear haplotypes, B2-M2-V/B2-M2-I carriers had significantly higher HDL-cholesterol than B1-M2-V/B1-M2-I (P=0.023) and B1-M2-V/B1-M2-V carriers (P=0.047), supporting CETP TaqB1B1 as a probable genetic risk factor for CHD in this population.

PubMed

Original abstract

Background: The Taq/B, Msp/ and I405V polymorphisms of cholesteryl ester transfer protein (CETP), an important regulatory factor of lipid metabolism, have been attracted much more attention by the researchers. In this study, we investigated the associations between these 3 polymorphisms of CETP gene and variations in plasma lipid and lipoprotein levels in patients with coronary heart disease (CHD).

Methods: Genomic DNA was extracted from leukocytes of 203 CHD patients and 100 control subjects using the salting out method. Genotyping of the CETP gene was performed using polymerase chain reaction (PCR) and restriction fragment length polymorphism (RFLP) techniques. Statistical analysis was conducted using the SPSS 10.0 software package.

Results: The distribution of allele and genotype frequencies of the Taq/B, MspI, and I405V polymorphisms was similar in the CHD patient group and the control group. The B1B1 genotype of the Taq/B polymorphism was associated with significantly higher TC (P=0.039) and LDL-C (P=0.044) levels than the B2B2 genotype in CHD patients, and with significantly higher LDL-C (P=0.034) levels than the B2B2 genotype in controls. Homozygotes of the I405V polymorphism exhibited significantly higher HDL-C levels than VV homozygotes among control subjects (P=0.023). In male CHD patients with unambiguously assigned haplotypes, B2-M2-V/B2-M2-I patients demonstrated significantly higher HDL-C concentrations than B1-M2-V/B1-M2-I (P=0.023) and B1-M2-V/B1-M2-V patients (P=0.047).

Conclusions: Genetic variations in the CETP gene may account for a significant proportion of the differences in plasma lipid and lipoprotein concentrations among the general population. The B1B1 genotype of the Taq/B polymorphism is probably a genetic risk factor for CHD in the study population.

geneticsHDL biologyLDL and apoB

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