| Literature DB >> 35915156 |
Catherine Tcheandjieu1,2,3,4, Xiang Zhu5,6,7,8, Austin T Hilliard5, Shoa L Clarke5,9, Valerio Napolioni10,11, Shining Ma6, Kyung Min Lee12, Huaying Fang13, Fei Chen14, Yingchang Lu15, Noah L Tsao16, Sridharan Raghavan17,18, Satoshi Koyama19, Bryan R Gorman20,21, Marijana Vujkovic22,23, Derek Klarin5,20,24,25,26,27, Michael G Levin22,23, Nasa Sinnott-Armstrong5,13, Genevieve L Wojcik28, Mary E Plomondon29,30, Thomas M Maddox31,32, Stephen W Waldo29,30,33, Alexander G Bick34, Saiju Pyarajan20,35, Jie Huang20,36,37, Rebecca Song20, Yuk-Lam Ho20, Steven Buyske38, Charles Kooperberg39, Jeffrey Haessler39, Ruth J F Loos40, Ron Do40,41, Marie Verbanck40,41,42, Kumardeep Chaudhary40,41, Kari E North43, Christy L Avery43, Mariaelisa Graff43, Christopher A Haiman14, Loïc Le Marchand44, Lynne R Wilkens44, Joshua C Bis45, Hampton Leonard46,47, Botong Shen48, Leslie A Lange49,50,51, Ayush Giri52,53, Ozan Dikilitas54, Iftikhar J Kullo54, Ian B Stanaway55, Gail P Jarvik56,57, Adam S Gordon58, Scott Hebbring59, Bahram Namjou60,61, Kenneth M Kaufman60, Kaoru Ito19, Kazuyoshi Ishigaki62, Yoichiro Kamatani62,63, Shefali S Verma64,65, Marylyn D Ritchie64,65, Rachel L Kember22,66, Aris Baras67, Luca A Lotta67, Sekar Kathiresan25,68,69,70, Elizabeth R Hauser71,72, Donald R Miller73,74, Jennifer S Lee5,75, Danish Saleheen22,76, Peter D Reaven77,78, Kelly Cho20,35, J Michael Gaziano20,35, Pradeep Natarajan25,69,79, Jennifer E Huffman20, Benjamin F Voight22,64,80,81, Daniel J Rader23, Kyong-Mi Chang22,23, Julie A Lynch82,83, Scott M Damrauer16,22,64, Peter W F Wilson84,85, Hua Tang13, Yan V Sun86,87, Philip S Tsao5,75,88, Christopher J O'Donnell20,35, Themistocles L Assimes89,90,91,92.
Abstract
We report a genome-wide association study (GWAS) of coronary artery disease (CAD) incorporating nearly a quarter of a million cases, in which existing studies are integrated with data from cohorts of white, Black and Hispanic individuals from the Million Veteran Program. We document near equivalent heritability of CAD across multiple ancestral groups, identify 95 novel loci, including nine on the X chromosome, detect eight loci of genome-wide significance in Black and Hispanic individuals, and demonstrate that two common haplotypes at the 9p21 locus are responsible for risk stratification in all populations except those of African origin, in which these haplotypes are virtually absent. Moreover, in the largest GWAS for angiographically derived coronary atherosclerosis performed to date, we find 15 loci of genome-wide significance that robustly overlap with established loci for clinical CAD. Phenome-wide association analyses of novel loci and polygenic risk scores (PRSs) augment signals related to insulin resistance, extend pleiotropic associations of these loci to include smoking and family history, and precisely document the markedly reduced transferability of existing PRSs to Black individuals. Downstream integrative analyses reinforce the critical roles of vascular endothelial, fibroblast, and smooth muscle cells in CAD susceptibility, but also point to a shared biology between atherosclerosis and oncogenesis. This study highlights the value of diverse populations in further characterizing the genetic architecture of CAD.Entities:
Mesh:
Year: 2022 PMID: 35915156 PMCID: PMC9419655 DOI: 10.1038/s41591-022-01891-3
Source DB: PubMed Journal: Nat Med ISSN: 1078-8956 Impact factor: 87.241