학술논문

Multi-ancestry genome-wide study identifies effector genes and druggable pathways for coronary artery calcification
Document Type
article
Author
Kavousi, MaryamBos, Maxime MBarnes, Hanna JLino Cardenas, Christian LWong, DorisLu, HaojieHodonsky, Chani JLandsmeer, Lennart PLTurner, Adam WKho, MinjungHasbani, Natalie Rde Vries, Paul SBowden, Donald WChopade, SandeshDeelen, JorisBenavente, Ernest DiezGuo, XiuqingHofer, EdithHwang, Shih-JenLutz, Sharon MLyytikäinen, Leo-PekkaSlenders, LotteSmith, Albert VStanislawski, Maggie Avan Setten, JessicaWong, QuennaYanek, Lisa RBecker, Diane MBeekman, MarianBudoff, Matthew JFeitosa, Mary FFinan, ChrisHilliard, Austin TKardia, Sharon LRKovacic, Jason CKral, Brian GLangefeld, Carl DLauner, Lenore JMalik, ShaistaHoesein, Firdaus AA MohamedMokry, MichalSchmidt, ReinholdSmith, Jennifer ATaylor, Kent DTerry, James Gvan der Grond, Jeroenvan Meurs, JoyceVliegenthart, RozemarijnXu, JianzhaoYoung, Kendra AZilhão, Nuno RZweiker, RobertAssimes, Themistocles LBecker, Lewis CBos, DanielCarr, J JeffreyCupples, L Adriennede Kleijn, Dominique PVde Winther, Mennoden Ruijter, Hester MFornage, MyriamFreedman, Barry IGudnason, VilmundurHingorani, Aroon DHokanson, John EIkram, M ArfanIšgum, IvanaJacobs, David RKähönen, MikaLange, Leslie ALehtimäki, TerhoPasterkamp, GerardRaitakari, Olli TSchmidt, HelenaSlagboom, P ElineUitterlinden, André GVernooij, Meike WBis, Joshua CFranceschini, NoraPsaty, Bruce MPost, Wendy SRotter, Jerome IBjörkegren, Johan LMO’Donnell, Christopher JBielak, Lawrence FPeyser, Patricia AMalhotra, Rajeevvan der Laan, Sander WMiller, Clint L
Source
Nature Genetics. 55(10)
Subject
Biological Sciences
Genetics
Cardiovascular
Heart Disease
Atherosclerosis
Heart Disease - Coronary Heart Disease
Prevention
Human Genome
Clinical Research
Aetiology
2.1 Biological and endogenous factors
Humans
Black People
Coronary Artery Disease
Genome-Wide Association Study
Risk Factors
European People
Medical and Health Sciences
Developmental Biology
Agricultural biotechnology
Bioinformatics and computational biology
Language
Abstract
Coronary artery calcification (CAC), a measure of subclinical atherosclerosis, predicts future symptomatic coronary artery disease (CAD). Identifying genetic risk factors for CAC may point to new therapeutic avenues for prevention. Currently, there are only four known risk loci for CAC identified from genome-wide association studies (GWAS) in the general population. Here we conducted the largest multi-ancestry GWAS meta-analysis of CAC to date, which comprised 26,909 individuals of European ancestry and 8,867 individuals of African ancestry. We identified 11 independent risk loci, of which eight were new for CAC and five had not been reported for CAD. These new CAC loci are related to bone mineralization, phosphate catabolism and hormone metabolic pathways. Several new loci harbor candidate causal genes supported by multiple lines of functional evidence and are regulators of smooth muscle cell-mediated calcification ex vivo and in vitro. Together, these findings help refine the genetic architecture of CAC and extend our understanding of the biological and potential druggable pathways underlying CAC.