Genetics
A CETP variant is among four SNPs significantly linked to plasma cholesterol, though only APOB and NPC1L1 show novel diet-gene interactions (J Lipid Res 2013)
Original title: Novel gene-by-environment interactions: APOB and NPC1L1 variants affect the relationship between dietary and total plasma cholesterol
Studying gut-expressed genetic variants and their interaction with dietary cholesterol in 1,128 subjects (772 discovery, 356 replication), researchers found four SNPs across three genes, APOB, CETP, and NPC1L1, significantly associated with plasma cholesterol in the discovery cohort. Testing these for gene-by-environment interactions with dietary cholesterol intake, the team identified and replicated novel interactions for two variants: an APOB missense SNP (rs1042034) and, in males only, an NPC1L1 synonymous SNP (rs2072183) in linkage disequilibrium with variants upstream of NPC1L1. The CETP variant did not show a significant gene-by-diet interaction itself, but its baseline association with plasma cholesterol contributed to identifying differential gut cholesterol absorption as a source of previously unexplained heritability in plasma cholesterol levels.
Original abstract
Cardiovascular disease (CVD) is the leading cause of death in developed countries. Plasma cholesterol level is a key risk factor in CVD pathogenesis. Genetic and dietary variation both influence plasma cholesterol; however, little is known about dietary interactions with genetic variants influencing the absorption and transport of dietary cholesterol. We sought to determine whether gut expressed variants predicting plasma cholesterol differentially affected the relationship between dietary and plasma cholesterol levels in 1,128 subjects (772/356 in the discovery/replication cohorts, respectively). Four single nucleotide polymorphisms (SNPs) within three genes (APOB, CETP, and NPC1L1) were significantly associated with plasma cholesterol in the discovery cohort. These were subsequently evaluated for gene-by-environment (GxE) interactions with dietary cholesterol for the prediction of plasma cholesterol, with significant findings tested for replication. Novel GxE interactions were identified and replicated for two variants: rs1042034, an APOB Ser4338Asn missense SNP and rs2072183 (in males only), a synonymous NPC1L1 SNP in linkage disequilibrium with SNPs 5' of NPC1L1. This study identifies the presence of novel GxE and gender interactions implying that differential gut absorption is the basis for the variant associations with plasma cholesterol. These GxE interactions may account for part of the "missing heritability" not accounted for by genetic associations.
Summary written by cetpinhibition.org from the published abstract; figures as published. Page updated 19 August 2026. Methods.