학술논문

Genome-wide association analyses identify new risk variants and the genetic architecture of amyotrophic lateral sclerosis
Document Type
Article
Author
van Rheenen, WouterShatunov, AlekseyDekker, Annelot MMcLaughlin, Russell LDiekstra, Frank PPulit, Sara Lvan der Spek, Rick A AVõsa, Urmode Jong, SimoneRobinson, Matthew RYang, JianFogh, Isabellavan Doormaal, Perry TCTazelaar, Gijs H PKoppers, MaxBlokhuis, Anna MSproviero, WilliamJones, Ashley RKenna, Kevin Pvan Eijk, Kristel RHarschnitz, OliverSchellevis, Raymond DBrands, William JMedic, JelenaMenelaou, AndronikiVajda, AliceTicozzi, NicolaLin, KuangRogelj, BorisVrabec, KatarinaRavnik-Glavač, MetkaKoritnik, BlažZidar, JanezLeonardis, LeaGrošelj, Leja DolencMillecamps, StéphanieSalachas, FrançoisMeininger, Vincentde Carvalho, MamedePinto, SusanaMora, Jesus SRojas-García, RicardoPolak, MeraidaChandran, SiddharthanColville, ShunaSwingler, RobertMorrison, Karen EShaw, Pamela JHardy, JohnOrrell, Richard WPittman, AlanSidle, KatieFratta, PietroMalaspina, AndreaTopp, SimonPetri, SusanneAbdulla, SusanneDrepper, CarstenSendtner, MichaelMeyer, ThomasOphoff, Roel AStaats, Kim AWiedau-Pazos, MartinaLomen-Hoerth, CatherineVan Deerlin, Vivianna MTrojanowski, John QElman, LaurenMcCluskey, LeoBasak, A NazliTunca, CerenHamzeiy, HamidParman, YesimMeitinger, ThomasLichtner, PeterRadivojkov-Blagojevic, MilenaAndres, Christian RMaurel, CindyBensimon, GilbertLandwehrmeyer, BernhardBrice, AlexisPayan, Christine A MSaker-Delye, SafaaDürr, AlexandraWood, Nicholas WTittmann, LukasLieb, WolfgangFranke, AndreRietschel, MarcellaCichon, SvenNöthen, Markus MAmouyel, PhilippeTzourio, ChristopheDartigues, Jean-FrançoisUitterlinden, Andre GRivadeneira, FernandoEstrada, KarolHofman, AlbertCurtis, CharlesBlauw, Hylke Mvan der Kooi, Anneke Jde Visser, MarianneGoris, AnWeber, MarkusShaw, Christopher ESmith, Bradley NPansarasa, OriettaCereda, CristinaDel Bo, RobertoComi, Giacomo PD'Alfonso, SandraBertolin, CinziaSorarù, GianniMazzini, LetiziaPensato, VivianaGellera, CinziaTiloca, CinziaRatti, AntoniaCalvo, AndreaMoglia, CristinaBrunetti, MauraArcuti, SimonaCapozzo, RosaZecca, ChiaraLunetta, ChristianPenco, SilvanaRiva, NiloPadovani, AlessandroFilosto, MassimilianoMuller, BernardStuit, Robbert JanBlair, IanZhang, KatharineMcCann, Emily PFifita, Jennifer ANicholson, Garth ARowe, Dominic BPamphlett, RogerKiernan, Matthew CGrosskreutz, JulianWitte, Otto WRinger, ThomasPrell, TinoStubendorff, BeatriceKurth, IngoHübner, Christian ALeigh, P NigelCasale, FedericoChio, AdrianoBeghi, EttorePupillo, ElisabettaTortelli, RosannaLogroscino, GiancarloPowell, JohnLudolph, Albert CWeishaupt, Jochen HRobberecht, WimVan Damme, PhilipFranke, LudePers, Tune HBrown, Robert HGlass, Jonathan DLanders, John EHardiman, OrlaAndersen, Peter MCorcia, PhilippeVourc'h, PatrickSilani, VincenzoWray, Naomi RVisscher, Peter Mde Bakker, Paul I Wvan Es, Michael APasterkamp, R JeroenLewis, Cathryn MBreen, GeromeAl-Chalabi, Ammarvan den Berg, Leonard HVeldink, Jan H
Source
Nature Genetics; August 2016, Vol. 48 Issue: 9 p1043-1048, 6p
Subject
Language
ISSN
10614036; 15461718
Abstract
To elucidate the genetic architecture of amyotrophic lateral sclerosis (ALS) and find associated loci, we assembled a custom imputation reference panel from whole-genome-sequenced patients with ALS and matched controls (n = 1,861). Through imputation and mixed-model association analysis in 12,577 cases and 23,475 controls, combined with 2,579 cases and 2,767 controls in an independent replication cohort, we fine-mapped a new risk locus on chromosome 21 and identified C21orf2 as a gene associated with ALS risk. In addition, we identified MOBP and SCFD1 as new associated risk loci. We established evidence of ALS being a complex genetic trait with a polygenic architecture. Furthermore, we estimated the SNP-based heritability at 8.5%, with a distinct and important role for low-frequency variants (frequency 1–10%). This study motivates the interrogation of larger samples with full genome coverage to identify rare causal variants that underpin ALS risk.