Genetics
CETP genetic variants are linked to plasma vitamin E levels, extending CETP genetics beyond cholesterol transport (Br J Nutr 2009)
Original title: Human fasting plasma concentrations of vitamin E and carotenoids, and their association with genetic variants in apo C-III, cholesteryl ester transfer protein, hepatic lipase, intestinal fatty acid binding protein and microsomal triacylglycerol transfer protein
This study assessed whether single nucleotide polymorphisms in five candidate genes involved in lipid metabolism (apo C-III, CETP, hepatic lipase, I-FABP, and MTP) are associated with fasting plasma concentrations of vitamin E and carotenoids, measured in 129 French Caucasian subjects (forty-eight males, eighty-one females), with SNPs genotyped by PCR-based restriction fragment length polymorphism analysis. Plasma alpha-tocopherol (vitamin E) concentrations were significantly different across SNP variants in apo C-III and CETP. Plasma gamma-tocopherol, alpha-carotene, and beta-carotene concentrations differed by hepatic lipase variant, and plasma lycopene differed by I-FABP variant in women, while MTP variants showed no effect. Most differences remained significant after adjusting for plasma triglycerides and cholesterol. The authors conclude apo C-III, CETP, and hepatic lipase play a role in determining plasma tocopherol concentrations.
Original abstract
Plasma concentrations of vitamin E and carotenoids are governed by several factors, including genetic factors. Single nucleotide polymorphisms (SNP) in some genes involved in lipid metabolism have recently been associated with fasting plasma concentrations of these fat-soluble micronutrients. To further investigate the role of genetic factors that modulate the plasma concentrations of these micronutrients, we assessed whether SNP in five candidate genes (apo C-III, CETP, hepatic lipase, I-FABP and MTP) were associated with the plasma concentrations of these micronutrients. Fasting plasma vitamin E and carotenoid concentrations were measured in 129 French Caucasian subjects (forty-eight males and eighty-one females). Candidate SNP were genotyped by PCR amplification followed by restriction fragment length polymorphisms. Plasma gamma-tocopherol, alpha-carotene and beta-carotene concentrations were significantly different (P < 0.05) in subjects who carried different SNP variants in hepatic lipase. Plasma alpha-tocopherol concentrations were significantly different in subjects who had different SNP variants in apo C-III and cholesteryl ester transfer protein (CETP). Plasma lycopene concentrations were significantly different (P < 0.05) in women who had different SNP variants in intestinal fatty acid binding protein (I-FABP). Finally, there was no effect of SNP variants in microsomal TAG transfer protein upon the plasma concentrations of these micronutrients. Most of the observed differences remained significant after the plasma micronutrients were adjusted for plasma TAG and cholesterol. These results suggest that apo C-III, CETP and hepatic lipase play a role in determining the plasma concentrations of tocopherols while hepatic lipase and I-FABP may modulate plasma concentrations of carotenoids.
Summary written by cetpinhibition.org from the published abstract; figures as published. Page updated 19 August 2026. Methods.