Logo Lanfrica
  • Accueil
  • Atlas
  • Analyses
  • Documentation
  • Sign in

© 2026 Lanfrica. Tous droits réservés. Tous les droits d'auteur des ressources affichées sur le site Web Lanfrica appartiennent aux détenteurs de droits d'auteur d'origine, sauf indication contraire explicite.

Stroke genetics informs drug discovery and risk prediction across ancestries

Domaine:

healthcare

Type de record:

paper
Créateur:
MisMalHacJur
Éditeur:
BorFac
Éditeur:
CCSDNat
Hôte:avatar
International audience Previous genome-wide association studies (GWASs) of stroke - the second leading cause of death worldwide - were conducted predominantly in populations of European ancestry(1,2). Here, in cross-ancestry GWAS meta-analyses of 110,182 patients who have had a stroke (five ancestries, 33% non-European) and 1,503,898 control individuals, we identify association signals for stroke and its subtypes at 89 (61 new) independent loci: 60 in primary inverse-variance-weighted analyses and 29 in secondary meta-regression and multitrait analyses. On the basis of internal cross-ancestry validation and an independent follow-up in 89,084 additional cases of stroke (30% non-European) and 1,013,843 control individuals, 87% of the primary stroke risk loci and 60% of the secondary stroke risk loci were replicated (P < 0.05). Effect sizes were highly correlated across ancestries. Cross-ancestry fine-mapping, in silico mutagenesis analysis(3), and transcriptome-wide and proteome-wide association analyses revealed putative causal genes (such as SH3PXD2A and FURIN) and variants (such as at GRK5 and NOS3). Using a three-pronged approach(4), we provide genetic evidence for putative drug effects, highlighting F11, KLKB1, PROC, GP1BA, LAMC2 and VCAM1 as possible targets, with drugs already under investigation for stroke for F11 and PROC. A polygenic score integrating cross-ancestry and ancestry-specific stroke GWASs with vascular-risk factor GWASs (integrative polygenic scores) strongly predicted ischaemic stroke in populations of European, East Asian and African ancestry(5). Stroke genetic risk scores were predictive of ischaemic stroke independent of clinical risk factors in 52,600 clinical-trial participants with cardiometabolic disease. Our results provide insights to inform biology, reveal potential drug targets and derive genetic risk prediction tools across ancestries.

Visit

hal.science

Tags

[SDV.SPEE]Life Sciences [q-bio]/Santé publique et épidémiologie

Licenses

http://creativecommons.org/licenses/by/info:eu-repo/semantics/OpenAccess

Similaires

Polygenic transcriptome risk scores (PTRS) can improve portability of polygenic risk scores across ancestriesProstate cancer risk stratification improvement across multiple ancestries with new polygenic hazard scoreBridgePRS leverages shared genetic effects across ancestries to increase polygenic risk score portabilityLocus 9p21.3 CAD Risk Across Diverse Populations: LD and Allelic Heterogeneity Explain Variation Across Ancestries and Reduced Replication in AfricansBiobank-scale characterization of Alzheimer’s disease and related dementias identifies potential disease-causing variants, risk factors, and genetic modifiers across diverse ancestriesGenetic architecture of complex traits in African ancestries across diverse environments

Polygenic transcriptome risk scores (PTRS) can improve portability of polygenic risk scores across ancestries

Abstract Background Polygenic risk scores (PRS) are valuable to translate the results of genome-wide

Prostate cancer risk stratification improvement across multiple ancestries with new polygenic hazard score

International audience Background: Prostate cancer risk stratification using single-n

BridgePRS leverages shared genetic effects across ancestries to increase polygenic risk score portability

Abstract Here we present BridgePRS, a novel Bayesian polyge

Locus 9p21.3 CAD Risk Across Diverse Populations: LD and Allelic Heterogeneity Explain Variation Across Ancestries and Reduced Replication in Africans

Abstract Background: The 9p21.3 locus was

Biobank-scale characterization of Alzheimer’s disease and related dementias identifies potential disease-causing variants, risk factors, and genetic modifiers across diverse ancestries

Abstract Alzheimer’s disease and related dementias (AD/ADRDs) p

Genetic architecture of complex traits in African ancestries across diverse environments

Polygenic risk score models for BMI trained in the All of Us biobank with PRS-CSx, with 10-fold vali