Genome-wide association analysis identifies TXNRD2, ATXN2 and FOXC1 as susceptibility loci for primary open-angle glaucoma.
Jessica N Cooke BaileyStephanie J LoomisJae Hee KangR Rand AllinghamPuya GharahkhaniChiea Chuen KhorKathryn P BurdonHugues AschardDaniel I ChasmanRobert P IgoPirro G HysiCraig A GlastonburyAllison Ashley-KochMurray BrilliantAndrew A BrownDonald L BudenzAlfonso BuilChing-Yu ChengHyon ChoiWilliam G ChristenGary CurhanImmaculata De VivoJohn H FingertPaul J FosterCharles FuchsDouglas GaasterlandTerry GaasterlandAlex W HewittFrank HuDavid J HunterAnthony P KhawajaRichard K LeeZheng LiPaul R LichterDavid A MackeyPeter McGuffinPaul MitchellSayoko E MoroiShamira A PereraKeating W PepperQibin QiTony RealiniJulia E RichardsPaul M RidkerEric RimmRobert RitchMarylyn DeRiggi RitchieJoel S SchumanWilliam K ScottKuldev SinghArthur J SitYeunjoo E SongRulla M TamimiFotis TopouzisAnanth C ViswanathanShefali Setia VermaDouglas VollrathJie Jin WangNicole WeisschuhBernd WissingerGadi WollsteinTien Y WongBrian L YaspanDonald J ZackKang ZhangEpic-Norfolk Eye Studynull nullRobert N WeinrebMargaret A Pericak-VanceKerrin SmallChristopher J HammondTin AungYutao LiuEranga N VithanaStuart MacGregorJamie E CraigPeter KraftGareth HowellMichael A HauserLouis R PasqualeJonathan L HainesJaney L WiggsPublished in: Nature genetics (2016)
Primary open-angle glaucoma (POAG) is a leading cause of blindness worldwide. To identify new susceptibility loci, we performed meta-analysis on genome-wide association study (GWAS) results from eight independent studies from the United States (3,853 cases and 33,480 controls) and investigated the most significantly associated SNPs in two Australian studies (1,252 cases and 2,592 controls), three European studies (875 cases and 4,107 controls) and a Singaporean Chinese study (1,037 cases and 2,543 controls). A meta-analysis of the top SNPs identified three new associated loci: rs35934224[T] in TXNRD2 (odds ratio (OR) = 0.78, P = 4.05 × 10(-11)) encoding a mitochondrial protein required for redox homeostasis; rs7137828[T] in ATXN2 (OR = 1.17, P = 8.73 × 10(-10)); and rs2745572[A] upstream of FOXC1 (OR = 1.17, P = 1.76 × 10(-10)). Using RT-PCR and immunohistochemistry, we show TXNRD2 and ATXN2 expression in retinal ganglion cells and the optic nerve head. These results identify new pathways underlying POAG susceptibility and suggest new targets for preventative therapies.
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