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Cited 1,125 time in webofscience Cited 1,120 time in scopus
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Genetics of rheumatoid arthritis contributes to biology and drug discoveryopen access

Authors
Okada, YukinoriWu, DiTrynka, GosiaRaj, TowfiqueTerao, ChikashiIkari, KatsunoriKochi, YutaOhmura, KoichiroSuzuki, AkariYoshida, ShinjiGraham, Robert R.Manoharan, ArunOrtmann, WardBhangale, TusharDenny, Joshua C.Carroll, Robert J.Eyler, Anne E.Greenberg, Jeffrey D.Kremer, Joel M.Pappas, Dimitrios A.Jiang, LeiYin, JianYe, LingyingSu, Ding-FengYang, JianXie, GangKeystone, EdWestra, Harm-JanEsko, TonuMetspalu, AndresZhou, XuezhongGupta, NamrataMirel, DanielStahl, Eli A.Diogo, DorotheeCui, JingLiao, KatherineGuo, Michael H.Myouzen, KeikoKawaguchi, TakahisaCoenen, Marieke J. H.van Riel, Piet L. C. M.van de laar, Mart A. F. J.Guchelaar, Henk-JanHuizinga, Tom W. J.Dieude, PhilippeMariette, XavierBridges, S. Louis, Jr.Zhernakova, AlexandraToes, Rene E. M.Tak, Paul P.Miceli-Richard, CorinneBang, So-YoungLee, Hye-SoonMartin, JavierGonzalez-Gay, Miguel A.Rodriguez-Rodriguez, LuisRantapaa-Dahlqvist, SolbrittArlestig, LisbethChoi, Hyon K.Kamatani, YoichiroGalan, PilarLathrop, MarkEyre, SteveBowes, JohnBarton, Annede Vries, NiekMoreland, Larry W.Criswell, Lindsey A.Karlson, Elizabeth W.Taniguchi, AtsuoYamada, RyoKubo, MichiakiLiu, Jun S.Bae, Sang-CheolWorthington, JanePadyukov, LeonidKlareskog, LarsGregersen, Peter K.Raychaudhuri, SoumyaStranger, Barbara E.De Jager, Philip L.Franke, LudeVisscher, Peter M.Brown, Matthew A.Yamanaka, HisashiMimori, TsuneyoTakahashi, AtsushiXu, HujiBehrens, Timothy W.Siminovitch, Katherine A.Momohara, ShigekiMatsuda, FumihikoYamamoto, KazuhikoPlenge, Robert M.
Issue Date
Feb-2014
Publisher
NATURE PUBLISHING GROUP
Citation
NATURE, v.506, no.7488, pp.376 - 378
Indexed
SCIE
SCOPUS
Journal Title
NATURE
Volume
506
Number
7488
Start Page
376
End Page
378
URI
https://scholarworks.bwise.kr/hanyang/handle/2021.sw.hanyang/26557
DOI
10.1038/nature12873
ISSN
0028-0836
Abstract
A major challenge in human genetics is to devise a systematic strategy to integrate disease-associated variants with diverse genomic and biological data sets to provide insight into disease pathogenesis and guide drug discovery for complex traits such as rheumatoid arthritis (RA)(1). Here we performed a genome-wide association study meta-analysis in a total of >100,000 subjects of European and Asian ancestries (29,880 RA cases and 73,758 controls), by evaluating similar to 10 million single-nucleotide polymorphisms. We discovered 42 novel RA risk loci at a genome-wide level of significance, bringing the total to 101 (refs 2-4). We devised an in silico pipeline using established bioinformatics methods based on functional annotation(5), cis-acting expression quantitative trait loci(6) and pathway analyses(7-9)-as well as novel methods based on genetic overlap with human primary immunodeficiency, haematological cancer somatic mutations and knockout mouse phenotypes-to identify 98 biological candidate genes at these 101 risk loci. We demonstrate that these genes are the targets of approved therapies for RA, and further suggest that drugs approved for other indications may be repurposed for the treatment of RA. Together, this comprehensive genetic study sheds light on fundamental genes, pathways and cell types that contribute to RA pathogenesis, and provides empirical evidence that the genetics of RA can provide important information for drug discovery.
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