Genetic risk factors for ischaemic stroke and its subtypes (the METASTROKE collaboration): a meta-analysis of genome-wide association studies.
- Authors
- Traylor, Matthew; Farrall, Martin; Holliday, Elizabeth G; Sudlow, Cathie; Hopewell, Jemma C; Cheng, Yu-Ching; Fornage, Myriam; Ikram, M Arfan; Malik, Rainer; Bevan, Steve; Thorsteinsdottir, Unnur; Nalls, Mike A; Longstreth, Wt; Wiggins, Kerri L; Yadav, Sunaina; Parati, Eugenio A; Destefano, Anita L; Worrall, Bradford B; Kittner, Steven J; Khan, Muhammad Saleem; Reiner, Alex P; Helgadottir, Anna; Achterberg, Sefanja; Fernandez-Cadenas, Israel; Abboud, Sherine; Schmidt, Reinhold; Walters, Matthew; Chen, Wei-Min; Ringelstein, E Bernd; O'Donnell, Martin; Ho, Weang Kee; Pera, Joanna; Lemmens, Robin; Norrving, Bo; Higgins, Peter; Benn, Marianne; Sale, Michele; KuhlenbΓ€umer, Gregor; Doney, Alexander S F; Vicente, Astrid M; Delavaran, Hossein; Algra, Ale; Davies, Gail; Oliveira, Sofia A; Palmer, Colin N A; Deary, Ian; Schmidt, Helena; Pandolfo, Massimo; Montaner, Joan; Carty, Cara; de Bakker, Paul I W; Kostulas, Konstantinos; Ferro, Jose M; van Zuydam, Natalie R; Valdimarsson, Einar; Nordestgaard, BΓΈrge G; Lindgren, Arne; Thijs, Vincent; Slowik, Agnieszka; Saleheen, Danish; ParΓ©, Guillaume; Berger, Klaus; Thorleifsson, Gudmar; Australian Stroke Genetics Collaborative, Wellcome Trust Case Control Consortium 2 (WTCCC2); Hofman, Albert; Mosley, Thomas H; Mitchell, Braxton D; Furie, Karen; Clarke, Robert; Levi, Christopher; Seshadri, Sudha; Gschwendtner, Andreas; Boncoraglio, Giorgio B; Sharma, Pankaj; Bis, Joshua C; Gretarsdottir, Solveig; Psaty, Bruce M; Rothwell, Peter M; Rosand, Jonathan; Meschia, James F; Stefansson, Kari; Dichgans, Martin; Markus, Hugh S; International Stroke Genetics Consortium
- Year
- 2012
- Journal
- The Lancet. Neurology
- PMID
- 23041239
- DOI
- 10.1016/S1474-4422(12)70234-X
- PMCID
- PMC3490334
BACKGROUND: Various genome-wide association studies (GWAS) have been done in ischaemic stroke, identifying a few loci associated with the disease, but sample sizes have been 3500 cases or less. We established the METASTROKE collaboration with the aim of validating associations from previous GWAS and identifying novel genetic associations through meta-analysis of GWAS datasets for ischaemic stroke and its subtypes. METHODS: We meta-analysed data from 15 ischaemic stroke cohorts with a total of 12β389 individuals with ischaemic stroke and 62β004 controls, all of European ancestry. For the associations reaching genome-wide significance in METASTROKE, we did a further analysis, conditioning on the lead single nucleotide polymorphism in every associated region. Replication of novel suggestive signals was done in 13β347 cases and 29β083 controls. FINDINGS: We verified previous associations for cardioembolic stroke near PITX2 (p=2Β·8Γ10(-16)) and ZFHX3 (p=2Β·28Γ10(-8)), and for large-vessel stroke at a 9p21 locus (p=3Β·32Γ10(-5)) and HDAC9 (p=2Β·03Γ10(-12)). Additionally, we verified that all associations were subtype specific. Conditional analysis in the three regions for which the associations reached genome-wide significance (PITX2, ZFHX3, and HDAC9) indicated that all the signal in each region could be attributed to one risk haplotype. We also identified 12 potentially novel loci at p<5Γ10(-6). However, we were unable to replicate any of these novel associations in the replication cohort. INTERPRETATION: Our results show that, although genetic variants can be detected in patients with ischaemic stroke when compared with controls, all associations we were able to confirm are specific to a stroke subtype. This finding has two implications. First, to maximise success of genetic studies in ischaemic stroke, detailed stroke subtyping is required. Second, different genetic pathophysiological mechanisms seem to be associated with different stroke subtypes. FUNDING: Wellcome Trust, UK Medical Research Council (MRC), Australian National and Medical Health Research Council, National Institutes of Health (NIH) including National Heart, Lung and Blood Institute (NHLBI), the National Institute on Aging (NIA), the National Human Genome Research Institute (NHGRI), and the National Institute of Neurological Disorders and Stroke (NINDS).
Flow diagram of METASTROKE analysesGWAS=genome-wide association study. SNP=single nucleotide polymorphism.
Manhattan plots of βlog10(p) against genomic position for principal analyses(A) All ischaemic stroke. (B) Large-vessel disease. (C) Cardioembolic stroke. (D) Small-vessel disease. Genome-wide meta-analysis association results by genomic position for the four main analyses.
Plots of conditional analysis regions before and after conditioning on lead SNPSNP=single nucleotide polymorphism. Plots of association signals around loci investigated in conditional analyses in subtypes in which they were discovered for the meta-analysed discovery samples. SNPs are coloured on the basis of their correlation (r2) with the labelled top SNP, which has the smallest p value in the region. The fine-scale recombination rates estimated from HapMap data are marked in red, with genes marked below by horizontal blue lines. Arrows on the horizontal blue lines show the direction of transcription, and rectangles are exons. (A,C,E) Regions from discovery meta-analyses. (B,D,F) Same regions as A,C,E after conditioning on the lead SNP from the region.
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