학술논문

Common and rare variant association analyses in amyotrophic lateral sclerosis identify 15 risk loci with distinct genetic architectures and neuron-specific biology
Document Type
article
Author
van Rheenen, Woutervan der Spek, Rick AABakker, Mark Kvan Vugt, Joke JFAHop, Paul JZwamborn, Ramona AJde Klein, NiekWestra, Harm-JanBakker, Olivier BDeelen, PatrickShireby, GemmaHannon, EilisMoisse, MatthieuBaird, DenisRestuadi, RestuadiDolzhenko, EgorDekker, Annelot MGawor, KlaraWesteneng, Henk-JanTazelaar, Gijs HPvan Eijk, Kristel RKooyman, MaartenByrne, Ross PDoherty, MarkHeverin, MarkAl Khleifat, AhmadIacoangeli, AlfredoShatunov, AlekseyTicozzi, NicolaCooper-Knock, JohnathanSmith, Bradley NGromicho, MartaChandran, SiddharthanPal, SuvankarMorrison, Karen EShaw, Pamela JHardy, JohnOrrell, Richard WSendtner, MichaelMeyer, ThomasBaşak, Nazlivan der Kooi, Anneke JRatti, AntoniaFogh, IsabellaGellera, CinziaLauria, GiuseppeCorti, StefaniaCereda, CristinaSproviero, DaisyD’Alfonso, SandraSorarù, GianniSiciliano, GabrieleFilosto, MassimilianoPadovani, AlessandroChiò, AdrianoCalvo, AndreaMoglia, CristinaBrunetti, MauraCanosa, AntonioGrassano, MaurizioBeghi, EttorePupillo, ElisabettaLogroscino, GiancarloNefussy, BeatriceOsmanovic, AlmaNordin, AngelicaLerner, YossefZabari, MichalGotkine, MarcBaloh, Robert HBell, ShaughnVourc’h, PatrickCorcia, PhilippeCouratier, PhilippeMillecamps, StéphanieMeininger, VincentSalachas, FrançoisMora Pardina, Jesus SAssialioui, AbdelilahRojas-García, RicardoDion, Patrick ARoss, Jay PLudolph, Albert CWeishaupt, Jochen HBrenner, DavidFreischmidt, AxelBensimon, GilbertBrice, AlexisDurr, AlexandraPayan, Christine AMSaker-Delye, SafaWood, Nicholas WTopp, SimonRademakers, RosaTittmann, LukasLieb, WolfgangFranke, AndreRipke, StephanBraun, AliceKraft, Julia
Source
Nature Genetics. 53(12)
Subject
Human Genome
Neurodegenerative
Clinical Research
Rare Diseases
Prevention
ALS
Neurosciences
Genetics
Brain Disorders
Aetiology
2.1 Biological and endogenous factors
Neurological
Amyotrophic Lateral Sclerosis
Brain
Cholesterol
Disease Progression
Female
Genome-Wide Association Study
Glutamine
Humans
Male
Mendelian Randomization Analysis
Microsatellite Repeats
Mutation
Neurodegenerative Diseases
Neurons
Quantitative Trait Loci
RNA-Seq
Risk Factors
SLALOM Consortium
PARALS Consortium
SLAGEN Consortium
SLAP Consortium
Biological Sciences
Medical and Health Sciences
Developmental Biology
Language
Abstract
Amyotrophic lateral sclerosis (ALS) is a fatal neurodegenerative disease with a lifetime risk of one in 350 people and an unmet need for disease-modifying therapies. We conducted a cross-ancestry genome-wide association study (GWAS) including 29,612 patients with ALS and 122,656 controls, which identified 15 risk loci. When combined with 8,953 individuals with whole-genome sequencing (6,538 patients, 2,415 controls) and a large cortex-derived expression quantitative trait locus (eQTL) dataset (MetaBrain), analyses revealed locus-specific genetic architectures in which we prioritized genes either through rare variants, short tandem repeats or regulatory effects. ALS-associated risk loci were shared with multiple traits within the neurodegenerative spectrum but with distinct enrichment patterns across brain regions and cell types. Of the environmental and lifestyle risk factors obtained from the literature, Mendelian randomization analyses indicated a causal role for high cholesterol levels. The combination of all ALS-associated signals reveals a role for perturbations in vesicle-mediated transport and autophagy and provides evidence for cell-autonomous disease initiation in glutamatergic neurons.