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CETP TaqIB B1B1 genotype independently predicts coronary disease, arteriosclerosis, and stroke in Japanese type 2 diabetics (Diabetes 2002)

Original title: Relationship between TaqIB cholesteryl ester transfer protein gene polymorphism and macrovascular complications in Japanese patients with type 2 diabetes

Diabetes · · 6

Kawasaki I, Tahara H, Emoto M, Shoji T, Nishizawa Y

This study investigated the CETP TaqIB (B1B2) polymorphism as a candidate for modulating lipid parameters and atherosclerosis susceptibility in 443 unrelated Japanese patients with type 2 diabetes, comparing clinical characteristics, lipid parameters, and macrovascular complications across the three genotype groups. The B2 allele was associated in a dose-dependent manner with higher HDL-cholesterol and apolipoprotein AI, and lower CETP concentrations. The prevalence of macrovascular complications, coronary heart disease, arteriosclerosis obliterans, and cerebral vascular disease, was significantly higher in B1B1 genotype subjects. Multiple logistic regression confirmed the CETP B1 allele was independently associated with the incidence of all three complications, after adjusting for other risk factors. The authors conclude the CETP TaqIB polymorphism is a strong genetic predictor of macrovascular complications in type 2 diabetic patients.

Read the paper (DOI)PubMed

Original abstract

Cholesteryl ester transfer protein (CETP) is a key regulating factor of lipid metabolism, and the polymorphism of its gene may therefore be a candidate for modulating the lipid parameters, altering the susceptibility to atherosclerosis in type 2 diabetic subjects. In a group of 443 unrelated Japanese patients with type 2 diabetes, we studied the B1B2 polymorphism at the CETP locus, which is detectable with the restriction enzyme TaqI. Patients were separated into three groups according to genotype and compared based on their clinical characteristics, lipid parameters, and macrovascular complications. The B2 allele was associated in a dose-dependent fashion with higher HDL cholesterol and apolipoprotein AI levels, together with lower CETP concentrations. Furthermore, the prevalence of macrovascular complications, such as coronary heart disease, arteriosclerosis obliterans, and cerebral vascular disease, was significantly higher in subjects with the B1B1 genotype. Multiple logistic regression analysis also showed that the B1 allele of CETP genotype was associated with the incidence of these three complications independently of other risk factors. Thus, in type 2 diabetic patients, the B1B2 polymorphism of CETP gene is likely to be a strong genetic predictor of macrovascular complications.

diabetesgenetics

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