Genetics
CETP variants raise HDL cholesterol by up to 14 percent regardless of diet, alcohol, or diabetes status in a high-risk Mediterranean population (J Lipid Res 2010)
Original title: Gene-environment interactions of CETP gene variation in a high cardiovascular risk Mediterranean population
Given that genome-wide association studies show CETP SNPs are more strongly associated with HDL-cholesterol (HDL-C) than any other genomic loci, this study examined gene-environment interactions between CETP SNPs and dietary fat intake, Mediterranean diet adherence, alcohol consumption, smoking, obesity, and diabetes on HDL-C in 4,210 high cardiovascular risk subjects from a Mediterranean population, focusing on the -4,502C>T and TaqIB SNPs (in partial linkage disequilibrium, D'=0.88, P less than 0.001). Both SNPs were independently associated with higher HDL-C (P less than 0.001), an association that was stronger when considered as a diplotype (14% higher in TT/B2B2 versus CC/B1B1 carriers), with no gene-gene interaction observed. No statistically significant interactions were found between these SNPs and obesity, diabetes, smoking, alcohol, dietary fat, or Mediterranean diet adherence in determining HDL-C, nor were clinically relevant associations found with blood pressure.
Original abstract
Genome-wide association studies show that cholesteryl ester transfer protein (CETP) single nucleotide polymorphisms (SNPs) are more strongly associated with HDL cholesterol (HDL-C) concentrations than any other loci across the genome. However, gene-environment interactions for clinical applications are still largely unknown. We studied gene-environment interactions between CETP SNPs and dietary fat intake, adherence to the Mediterranean diet, alcohol consumption, smoking, obesity, and diabetes on HDL-C in 4,210 high cardiovascular risk subjects from a Mediterranean population. We focused on the -4,502C>T and the TaqIB SNPs in partial linkage disequilibrium (D'= 0.88; P < 0.001). They were independently associated with higher HDL-C (P < 0.001); this clinically relevant association was greater when their diplotype was considered (14% higher in TT/B2B2 vs. CC/B1B1). No gene-gene interaction was observed. We also analyzed the association of these SNPs with blood pressure, and no clinically relevant associations were detected. No statistically significant interactions of these SNPs with obesity, diabetes, and smoking in determining HDL-C concentrations were found. Likewise, alcohol, dietary fat, and adherence to the Mediterranean diet did not statistically interact with the CETP variants (independently or as diplotype) in determining HDL-C. In conclusion, the strong association of the CETP SNPs and HDL-C was not statistically modified by diet or by the other environmental factors.
Summary written by cetpinhibition.org from the published abstract; figures as published. Page updated 19 August 2026. Methods.