학술논문

Genome-wide Analyses Identify KIF5A as a Novel ALS Gene.
Document Type
article
Author
Nicolas, AudeKenna, Kevin PRenton, Alan ETicozzi, NicolaFaghri, FarazChia, RuthDominov, Janice AKenna, Brendan JNalls, Mike AKeagle, PamelaRivera, Alberto Mvan Rheenen, WouterMurphy, Natalie Avan Vugt, Joke JFAGeiger, Joshua TVan der Spek, Rick APliner, Hannah AShankaracharyaSmith, Bradley NMarangi, GiuseppeTopp, Simon DAbramzon, YevgeniyaGkazi, Athina SoragiaEicher, John DKenna, AoifeITALSGEN ConsortiumMora, GabrieleCalvo, AndreaMazzini, LetiziaRiva, NiloMandrioli, JessicaCaponnetto, ClaudiaBattistini, StefaniaVolanti, PaoloLa Bella, VincenzoConforti, Francesca LBorghero, GiuseppeMessina, SoniaSimone, Isabella LTrojsi, FrancescaSalvi, FabrizioLogullo, Francesco OD'Alfonso, SandraCorrado, LuciaCapasso, MargheritaFerrucci, LuigiGenomic Translation for ALS Care (GTAC) ConsortiumMoreno, Cristiane de Araujo MartinsKamalakaran, SitharthanGoldstein, David BALS Sequencing ConsortiumGitler, Aaron DHarris, TimMyers, Richard MNYGC ALS ConsortiumPhatnani, HemaliMusunuri, Rajeeva LochanEvani, Uday ShankarAbhyankar, AvinashZody, Michael CAnswer ALS FoundationKaye, JuliaFinkbeiner, StevenWyman, Stacia KLeNail, AlexLima, LeandroFraenkel, ErnestSvendsen, Clive NThompson, Leslie MVan Eyk, Jennifer EBerry, James DMiller, Timothy MKolb, Stephen JCudkowicz, MeritBaxi, EmilyClinical Research in ALS and Related Disorders for Therapeutic Development (CReATe) ConsortiumBenatar, MichaelTaylor, J PaulRampersaud, EvadnieWu, GangWuu, JoanneSLAGEN ConsortiumLauria, GiuseppeVerde, FedericoFogh, IsabellaTiloca, CinziaComi, Giacomo PSorarù, GianniCereda, CristinaFrench ALS ConsortiumCorcia, PhilippeLaaksovirta, HannuMyllykangas, LiisaJansson, LiljaValori, MikoEaling, JohnHamdalla, HishamRollinson, SaraPickering-Brown, StuartOrrell, Richard W
Source
Neuron. 97(6)
Subject
ITALSGEN Consortium
Genomic Translation for ALS Care (GTAC) Consortium
ALS Sequencing Consortium
NYGC ALS Consortium
Answer ALS Foundation
Clinical Research in ALS and Related Disorders for Therapeutic Development (CReATe) Consortium
SLAGEN Consortium
French ALS Consortium
Project MinE ALS Sequencing Consortium
Humans
Amyotrophic Lateral Sclerosis
Cohort Studies
Amino Acid Sequence
Adult
Aged
Aged
80 and over
Middle Aged
Female
Male
Genome-Wide Association Study
Young Adult
Loss of Function Mutation
Kinesins
ALS
GWAS
KIF5A
WES
WGS
axonal transport
cargo
Brain Disorders
Genetics
Human Genome
Rare Diseases
Neurosciences
Neurodegenerative
Aetiology
2.1 Biological and endogenous factors
Neurological
Psychology
Cognitive Sciences
Neurology & Neurosurgery
Language
Abstract
To identify novel genes associated with ALS, we undertook two lines of investigation. We carried out a genome-wide association study comparing 20,806 ALS cases and 59,804 controls. Independently, we performed a rare variant burden analysis comparing 1,138 index familial ALS cases and 19,494 controls. Through both approaches, we identified kinesin family member 5A (KIF5A) as a novel gene associated with ALS. Interestingly, mutations predominantly in the N-terminal motor domain of KIF5A are causative for two neurodegenerative diseases: hereditary spastic paraplegia (SPG10) and Charcot-Marie-Tooth type 2 (CMT2). In contrast, ALS-associated mutations are primarily located at the C-terminal cargo-binding tail domain and patients harboring loss-of-function mutations displayed an extended survival relative to typical ALS cases. Taken together, these results broaden the phenotype spectrum resulting from mutations in KIF5A and strengthen the role of cytoskeletal defects in the pathogenesis of ALS.