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Genetic architecture of circulating lipid levels
Authors:Demirkan Ayşe  Amin Najaf  Isaacs Aaron  Jarvelin Marjo-Riitta  Whitfield John B  Wichmann Heinz-Erich  Kyvik Kirsten O H M  Rudan Igor  Gieger Christian  Hicks Andrew A  Johansson Åsa  Hottenga Jouke-Jan  Smith Johannes J  Wild Sarah H  Pedersen Nancy L  Willemsen Gonneke  Mangino Massimo  Hayward Caroline  Uitterlinden André G  Hofman Albert  Witteman Jacqueline  Montgomery Grant W  Pietiläinen Kirsi H  Rantanen Taina  Kaprio Jaakko  Döring Angela  Pramstaller Peter P  Gyllensten Ulf  de Geus Eco J C  Penninx Brenda W  Wilson James F  Rivadeneria Fernando  Magnusson Patrik K E  Boomsma Dorret I  Spector Tim  Campbell Harry
Affiliation:Genetic Epidemiology Unit, Department of Epidemiology and Clinical Genetics, Erasmus University Medical Center, Rotterdam, The Netherlands.
Abstract:Serum concentrations of low-density lipoprotein cholesterol (LDL-C), high-density lipoprotein cholesterol (HDL-C), triglycerides (TGs) and total cholesterol (TC) are important heritable risk factors for cardiovascular disease. Although genome-wide association studies (GWASs) of circulating lipid levels have identified numerous loci, a substantial portion of the heritability of these traits remains unexplained. Evidence of unexplained genetic variance can be detected by combining multiple independent markers into additive genetic risk scores. Such polygenic scores, constructed using results from the ENGAGE Consortium GWAS on serum lipids, were applied to predict lipid levels in an independent population-based study, the Rotterdam Study-II (RS-II). We additionally tested for evidence of a shared genetic basis for different lipid phenotypes. Finally, the polygenic score approach was used to identify an alternative genome-wide significance threshold before pathway analysis and those results were compared with those based on the classical genome-wide significance threshold. Our study provides evidence suggesting that many loci influencing circulating lipid levels remain undiscovered. Cross-prediction models suggested a small overlap between the polygenic backgrounds involved in determining LDL-C, HDL-C and TG levels. Pathway analysis utilizing the best polygenic score for TC uncovered extra information compared with using only genome-wide significant loci. These results suggest that the genetic architecture of circulating lipids involves a number of undiscovered variants with very small effects, and that increasing GWAS sample sizes will enable the identification of novel variants that regulate lipid levels.
Keywords:serum lipids   polygenic   genome-wide association   polygenic score   pathway analysis
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