Genetics
CETP variant rs708272 shows a striking association with childhood HDL cholesterol and triglycerides in a pan-European cohort (Sci Rep 2020)
Original title: Common genetic variation in obesity, lipid transfer genes and risk of Metabolic Syndrome: Results from IDEFICS/I.Family study and meta-analysis
This pan-European IDEFICS/I.Family cohort study examined associations between common genetic variants and metabolic syndrome (MetS) score from early childhood to adolescence, testing associations in 3067 children with a linear mixed model, confirmed by meta-analysis of identified SNPs. With Bonferroni correction, significant associations (p less than 1.4x10-4) were found for 5 SNPs in high linkage disequilibrium in a non-coding intronic region of the FTO gene, with the strongest association for rs8050136 (effect size beta=0.31, p=1.52x10-5). A strong association was also observed for rs708272 in CETP with increased HDL-cholesterol (p=5.63x10-40) and decreased triglycerides (p=9.60x10-5). The authors conclude genetic predisposition to childhood MetS is largely driven by genes of obesity and lipid metabolism, with potential value for polygenic scores identifying high-risk children.
Original abstract
As the prevalence of metabolic syndrome (MetS) in children and young adults is increasing, a better understanding of genetics that underlie MetS will provide critical insights into the origin of the disease. We examined associations of common genetic variants and repeated MetS score from early childhood to adolescence in a pan-European, prospective IDEFICS/I.Family cohort study with baseline survey and follow-up examinations after two and six years. We tested associations in 3067 children using a linear mixed model and confirmed the results with meta-analysis of identified SNPs. With a stringent Bonferroni adjustment for multiple comparisons we obtained significant associations(p < 1.4 × 10-4) for 5 SNPs, which were in high LD (r2 > 0.85) in the 16q12.2 non-coding intronic chromosomal region of FTO gene with strongest association observed for rs8050136 (effect size(β) = 0.31, pWald = 1.52 × 10-5). We also observed a strong association of rs708272 in CETP with increased HDL (p = 5.63 × 10-40) and decreased TRG (p = 9.60 × 10-5) levels. These findings along with meta-analysis advance etiologic understanding of childhood MetS, highlighting that genetic predisposition to MetS is largely driven by genes of obesity and lipid metabolism. Inclusion of the associated genetic variants in polygenic scores for MetS may prove to be fundamental for identifying children and subsequently adults of the high-risk group to allow earlier targeted interventions.
Summary written by cetpinhibition.org from the published abstract; figures as published. Page updated 19 August 2026. Methods.