4.5 Article

Polygenic determinants of severe hypertriglyceridemia

期刊

HUMAN MOLECULAR GENETICS
卷 17, 期 18, 页码 2894-2899

出版社

OXFORD UNIV PRESS
DOI: 10.1093/hmg/ddn188

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资金

  1. Jacob J. Wolfe Distinguished Medical Research Chair
  2. Edith Schulich Vinet Canada Research Chair (Tier I)
  3. Jean Davignon Award for Cardiovascular Research (Pfizer, Canada)
  4. Career Investigator award from the Heart and Stroke Foundation of Ontario
  5. Canadian Institutes for Health Research [MOP-13430, MOP-39533, MOP-39833]
  6. Heart and Stroke Foundation of Ontario [PRG-5967, NA-6059]
  7. Ontario Research Fund
  8. Ontario Genomics Institute

向作者/读者索取更多资源

Recent genome-wide association (GWA) studies have identified new genetic determinants of complex quantitative traits, including plasma triglyceride (TG). We hypothesized that common variants associated with mild TG variation identified in GWA studies would also be associated with severe hypertriglyceridemia (HTG). We studied 132 patients of European ancestry with severe HTG (fasting plasma TG > 10 mmol/l), who had no mutations found by resequencing of candidate genes, and 351 matched normolipidemic controls. We determined genotypes for: GALNT2 rs4846914, TBL2/MLXIPL rs17145738, TRIB1 rs17321515, ANGPTL3 rs12130333, GCKR rs780094, APOA5 rs3135506 (S19W), APOA5 rs662799 (-1131T > C), APOE (isoforms) and LPL rs328 (S447X). We found that: (i) genotypes, including those of APOA5 S19W, APOA5 -1131T > C, APOE, GCKR, TRIB1 and TBL2/MLXIPL, were significantly associated with severe HTG; (ii) odds ratios for these genetic variables were significant in both univariate and multivariate regression analyses, irrespective of the presence or absence of diabetes or obesity; (iii) a significant fraction-about one-quarter-of the explained variation in disease status was associated with these genotypes. Therefore, common SNPs (single nucleotide polymorphisms) that are associated with mild TG variation in GWA studies of normolipidemic subjects are also associated with severe HTG. Our findings are consistent with the emerging model of a complex genetic trait. At the extremes of a quantitative trait, such as severe HTG, are found the cumulative contributions of both multiple rare alleles with large genetic effects and common alleles with small effects.

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