Genetics
Unlike hepatic lipase and LPL variants, the CETP-HDL cholesterol link is not modified by dietary fat intake in a large biracial cohort (Atherosclerosis 2007)
Original title: Associations between HDL-cholesterol and polymorphisms in hepatic lipase and lipoprotein lipase genes are modified by dietary fat intake in African American and White adults
This study examined whether dietary fat intake modifies the relationship between HDL-cholesterol (HDL-C) and polymorphisms in hepatic lipase (LIPC -514C to T), CETP (TaqIB), and lipoprotein lipase (LPL S447X), assessing diet by food frequency questionnaire, plasma lipids, and genotypes in about 12,000 White and African American adults. Minor allele homozygotes had the highest HDL-C across all three genes and both races (P less than 0.001), but dietary fat modified the LIPC and LPL associations: in African Americans, LIPC TT homozygotes had higher HDL-C than CC or CT genotypes at high fat intake but not lower fat intake, and in Whites, LPL GG homozygotes had the highest HDL-C at lower fat intake but the lowest at higher fat intake (both interaction P less than or equal to 0.013). In contrast, dietary fat did not modify the association between CETP genotype and HDL-C. The authors conclude LIPC and LPL, but not CETP, associations with HDL-C are modified by dietary fat.
Original abstract
Polymorphisms in genes involved in HDL-cholesterol (HDL-C) metabolism influence plasma HDL-C concentrations. We examined whether dietary fat intake modified relations between HDL-C and polymorphisms in hepatic lipase (LIPC-514C-->T), cholesteryl ester transfer protein (CETP TaqIB), and lipoprotein lipase (LPL S447X) genes. Diet (food frequency questionnaire), plasma lipids, and LIPC, CETP, and LPL genotypes were assessed in approximately 12,000 White and African American adults. In both races and all genotypes studied, minor allele homozygotes had highest HDL-C concentrations compared to the other genotypes (P<0.001). However, main effects were modified by usual dietary fat intake. In African Americans - women somewhat more strongly than men -LIPC TT homozygotes with fat intake >or=33.2% of energy had approximately 3-4 mg/dL higher HDL-C concentrations than CC and CT genotypes. In contrast, when fat intake was <33.2% of energy, TT homozygotes had HDL-C concentrations approximately 3.5mg/dL greater than those with the CC genotype but not different from those with the CT genotype (P(interaction)=0.013). In Whites, LPLGG homozygotes had greatest HDL-C at lower total, saturated, and monounsaturated fat intakes but lowest HDL-C at higher intakes of these fats (P(interaction)<or=0.002). Dietary fat did not modify associations between CETP and HDL-C. In conclusion, these data show that plasma HDL-C differs according to LIPC, LPL, and CETP genotypes. In the case of LIPC and LPL, data suggest dietary fat modifies these relations.
Summary written by cetpinhibition.org from the published abstract; figures as published. Page updated 19 August 2026. Methods.