Abstract
AbstractPerturbation of lipid homoeostasis is a major risk factor for cardiovascular disease (CVD), the leading cause of death worldwide. We aimed to identify genetic variants affecting lipid levels, and thereby risk of CVD, in Greenlanders. Genome-wide association studies (GWAS) of six blood lipids, triglycerides, LDL-cholesterol, HDL-cholesterol, total cholesterol, as well as apolipoproteins A1 and B, were performed in up to 4473 Greenlanders. For genome-wide significant variants, we also tested for associations with additional traits, including CVD events. We identified 11 genome-wide significant loci associated with lipid traits. Most of these loci were already known in Europeans, however, we found a potential causal variant near PCSK9 (rs12117661), which was independent of the known PCSK9 loss-of-function variant (rs11491147). rs12117661 was associated with lower LDL-cholesterol (βSD(SE) = −0.22 (0.03), p = 6.5 × 10−12) and total cholesterol (−0.17 (0.03), p = 1.1 × 10−8) in the Greenlandic study population. Similar associations were observed in Europeans from the UK Biobank, where the variant was also associated with a lower risk of CVD outcomes. Moreover, rs12117661 was a top eQTL for PCSK9 across tissues in European data from the GTEx portal, and was located in a predicted regulatory element, supporting a possible causal impact on PCSK9 expression. Combined, the 11 GWAS signals explained up to 16.3% of the variance of the lipid traits. This suggests that the genetic architecture of lipid levels in Greenlanders is different from Europeans, with fewer variants explaining the variance.
Funder
Novo Nordisk Fonden
Det Frie Forskningsråd
Karen Elise Jensens Fond
Department of Health, Greenland
Københavns Universitet
AstraZeneca
Amgen
Boehringer Ingelheim
Novo Nordisk
Sanofi Aventis
Villum Fonden
Publisher
Springer Science and Business Media LLC
Subject
Genetics (clinical),Genetics
Reference45 articles.
1. World Health Organization. The top 10 causes of death 2018 [cited 2020 January 24]. Available from: https://www.who.int/news-room/fact-sheets/detail/the-top-10-causes-of-death.
2. Ciffone NA, Copple T. Managing dyslipidemia for CVD prevention: a review of recent clinical practice guidelines. Nurse Pract. 2019;44:8–16.
3. Chait A, Goldberg I. Treatment of dyslipidemia in diabetes: recent advances and remaining questions. Curr Diabetes Rep. 2017;17:10.
4. Graham SE, Clarke SL, Wu KH, Kanoni S, Zajac GJM, Ramdas S, et al. The power of genetic diversity in genome-wide association studies of lipids. Nature. 2021;600:675–9.
5. Klarin D, Damrauer SM, Cho K, Sun YV, Teslovich TM, Honerlaw J, et al. Genetics of blood lipids among similar to 300,000 multi-ethnic participants of the Million Veteran Program. Nat Genet. 2018;50:1514–+.
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