Genetics
White women with a CETP -629 A/A genotype gain the most HDL cholesterol from 20 weeks of endurance training (Physiol Genomics 2007)
Original title: CETP genotypes and HDL-cholesterol phenotypes in the HERITAGE Family Study
This study investigated associations between CETP polymorphisms and HDL-cholesterol (HDL-c) levels before and after 20 weeks of endurance training in the HERITAGE Family Study, genotyping 13 CETP SNPs in 265 Blacks and 486 Whites. Three haplotypes defined by SNPs at -1337, -971, and -629 were strongly associated with baseline HDL-c in Whites; C-1337T and C-629A were each associated with baseline HDL-c (P less than 0.001) and apoA1 (P less than 0.01), though only C-629A remained significant in a combined model. Genotype-by-sex interactions were observed at the -629 locus for HDL3-c (P=0.004) and apoA1 (P=0.02) training responses in Whites, with -629 A/A homozygous women showing greater training-induced increases in HDL3-c and apoA1 (both P=0.02) than other genotypes. CETP and APOE genotypes together explained 6.0-8.8% of HDL trait variance.
Original abstract
Associations between cholesteryl ester transfer protein (CETP) polymorphisms and high-density lipoprotein cholesterol (HDL-c) levels before and after 20 wk of endurance training were investigated in the HERITAGE Family Study. Plasma HDL-c, HDL(2)-c, HDL(3)-c, and apolipoprotein (apo)A1 levels were measured, and 13 CETP single nucleotide polymorphisms (SNPs) were genotyped in 265 blacks and 486 whites. Three haplotypes defined by SNPs at the -1337, -971, and -629 sites were strongly associated with baseline HDL-c levels in whites. Both C-1337T and C-629A were associated with baseline HDL-c (P < 0.001) and apoA1 (P < 0.01) when tested separately. However, only C-629A remained significant in a combined model. G-971A was not associated with HDL phenotypes, but showed significant interactions with C-629A (P = 0.002) on baseline traits. Genotype-by-sex interactions were observed at the -629 locus for HDL(3)-c (P = 0.004) and apoA1 (P = 0.02) training responses in whites. In women, the -629 A/A homozygotes showed greater increases in HDL(3)-c (P = 0.02) and apoA1 (P = 0.02) levels than the other genotypes. Finally, apolipoprotein E (APOE) genotype and the CETP C-629A locus contributed independently and in additive fashion to the HDL traits, explaining 6.0-8.8% of the variance. The CETP -1337T and -629A alleles are associated with higher baseline HDL-c and apoA1 levels. The beneficial effects of endurance training on plasma HDL(3)-c and apoA1 levels are evident in white women homozygous for the -629A allele. The CETP and APOE genotypes account for up to 9% of the variance in HDL-c phenotypes in the HERITAGE Family Study.
Summary written by cetpinhibition.org from the published abstract; figures as published. Page updated 19 August 2026. Methods.