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Genome-wide association analyses identify distinct genetic architectures for age-related macular degeneration across ancestries

  • VA Million Veteran Program
  • , International AMD Genomics Consortium (IAMDGC)
  • Department of Veterans Affairs
  • Booz Allen Hamilton, Inc.
  • Icahn School of Medicine at Mount Sinai
  • VA Medical Center
  • VA Northeast Ohio Healthcare System
  • Case Western Reserve University
  • SUNY Downstate Health Sciences University
  • University of Regensburg
  • University of Michigan, Ann Arbor
  • University of Pennsylvania
  • University of Miami
  • National Institutes of Health
  • University of Tasmania
  • University of Melbourne
  • Royal Victorian Eye & Ear Hospital, Melbourne
  • University of Western Australia
  • Marshfield Clinic
  • University of California at San Diego
  • Sichuan University
  • Institut national de la santé et de la recherche médicale
  • Institut de la Vision
  • CNRS
  • University of Southampton
  • Hadassah University Medical Centre
  • Cleveland Clinic Foundation
  • University of Wisconsin-Madison
  • Harvard University
  • University of Utah
  • The University of Sydney
  • Columbia University
  • Moorfields Eye Hospital NHS Foundation Trust
  • University College London
  • University of Cambridge
  • University of Cologne
  • Radboud University Nijmegen
  • Oregon Health and Science University
  • University of California at Los Angeles
  • University of Edinburgh
  • Erasmus University Rotterdam
  • Johns Hopkins University
  • University of Pittsburgh

Research output: Contribution to journalArticlepeer-review

31 Scopus citations

Abstract

To effectively reduce vision loss due to age-related macular generation (AMD) on a global scale, knowledge of its genetic architecture in diverse populations is necessary. A critical element, AMD risk profiles in African and Hispanic/Latino ancestries, remains largely unknown. We combined data in the Million Veteran Program with five other cohorts to conduct the first multi-ancestry genome-wide association study of AMD and discovered 63 loci (30 novel). We observe marked cross-ancestry heterogeneity at major risk loci, especially in African-ancestry populations which demonstrate a primary signal in a major histocompatibility complex class II haplotype and reduced risk at the established CFH and ARMS2/HTRA1 loci. Dissecting local ancestry in admixed individuals, we find significantly smaller marginal effect sizes for CFH risk alleles in African ancestry haplotypes. Broadening efforts to include ancestrally distinct populations helped uncover genes and pathways that boost risk in an ancestry-dependent manner and are potential targets for corrective therapies.

Original languageEnglish
Article number1776
Pages (from-to)2659-2671
Number of pages13
JournalNature Genetics
Volume56
Issue number12
DOIs
StatePublished - Dec 2024

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