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Largest paediatric lipid GWAS to date confirms CETP as a robust HDL locus in Indian schoolchildren, with rare CETP variants also implicated (J Hum Genet 2025)

Original title: Early lipid genetics: identification of common and rare genetic variants for lipid traits in Indian adolescents

J Hum Genet · · 5

Nair JM, Basu A, Tandon N, Bharadwaj D

A two-stage genome-wide association study (n = 5,412) and independent exome-wide association study (n = 4,750) examined lipid genetics in Indian school-going children, described as the largest single-cohort paediatric lipid study to date. Genome-wide analysis identified robust associations at established loci, including CETP for HDL cholesterol, alongside CELSR2 and PSRC1 for LDL and total cholesterol, and GCKR, ZNF259 and TBL2 for triglycerides. Gene-based analysis separately pinpointed CETP and APOC1 as significant for HDL and LDL respectively, and rare-variant analysis found loss-of-function missense variants in CETP, alongside TM6SF2 and APOE, significantly regulating lipid profiles. Associations replicated with consistent direction in European datasets and Indian adults, supporting conserved biology across ancestries and age groups. A genetics paper establishing CETP as an early-life lipid determinant, not a drug study.

Read the paper (DOI)PubMed

Original abstract

Elucidating the genetic basis of lipid metabolism in children is essential for early intervention in dyslipidemia and cardiovascular diseases. We performed a two-staged genome-wide association study (GWAS; N = 5412) and an independent exome-wide association study (ExWAS; N = 4750) on lipid parameters-HDL, LDL, Triglycerides (TG), Total Cholesterol (TC) in Indian school-going children - the largest single-cohort paediatric lipid study till date. GWAS identified robust associations at established loci, including CETP for HDL; CELSR2, and PSRC1 for LDL and TC, and GCKR, ZNF259, and TBL2 for TG. We also validated known associations at sub-GWAS significance in FADS2, GATAD2A, PRKCA, and QKI. Exome-based analyses further refined functional variants within these loci and revealed additional known loci in ALDH1A2 for HDL; APOE, APOC1, TM6SF2, CILP2, TOMM40, for LDL and TC; and APOA5, BUD13 for TG and novel loci in ATP8B3, MYH7B, GYS2, and RNF8 for TG. Conditional analysis revealed multiple independent signals at key loci. Gene-based GWAS pinpointed CETP and APOC1 as significant for HDL and LDL, respectively. Rare variant analysis identified significant contribution of loss-of-function missense variants in CETP, TM6SF2, and APOE, in regulating lipid profiles. Associations replicated with consistent directionality in European datasets and Indian adults, reinforcing conserved biology across ancestries and age groups. Functional enrichment analyses emphasized lipid-related pathways and differential expression in liver. These findings lay the foundation for ancestry-informed genetic risk prediction models to identify children at early risk for cardiovascular diseases.

childrengeneticsHDL biology

Summary written by cetpinhibition.org from the published abstract; figures as published. Page updated 18 August 2026. Methods.