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Pleiotropic Meta-Analysis of Cognition, Education, and Schizophrenia Differentiates Roles of Early Neurodevelopmental and Adult Synaptic Pathways

  • Max Lam
  • , W. David Hill
  • , Joey W. Trampush
  • , Jin Yu
  • , Emma Knowles
  • , Gail Davies
  • , Eli Stahl
  • , Laura Huckins
  • , David C. Liewald
  • , Srdjan Djurovic
  • , Ingrid Melle
  • , Kjetil Sundet
  • , Andrea Christoforou
  • , Ivar Reinvang
  • , Pamela DeRosse
  • , Astri J. Lundervold
  • , Vidar M. Steen
  • , Thomas Espeseth
  • , Katri Räikkönen
  • , Elisabeth Widen
  • Aarno Palotie, Johan G. Eriksson, Ina Giegling, Bettina Konte, Annette M. Hartmann, Panos Roussos, Stella Giakoumaki, Katherine E. Burdick, Antony Payton, William Ollier, Ornit Chiba-Falek, Deborah K. Attix, Anna C. Need, Elizabeth T. Cirulli, Aristotle N. Voineskos, Nikos C. Stefanis, Dimitrios Avramopoulos, Alex Hatzimanolis, Dan E. Arking, Nikolaos Smyrnis, Robert M. Bilder, Nelson A. Freimer, Tyrone D. Cannon, Edythe London, Russell A. Poldrack, Fred W. Sabb, Eliza Congdon, Emily Drabant Conley, Matthew A. Scult, Dwight Dickinson, Richard E. Straub, Gary Donohoe, Derek Morris, Aiden Corvin, Michael Gill, Ahmad R. Hariri, Daniel R. Weinberger, Neil Pendleton, Panos Bitsios, Dan Rujescu, Jari Lahti, Stephanie Le Hellard, Matthew C. Keller, Ole A. Andreassen, Ian J. Deary, David C. Glahn, Anil K. Malhotra, Todd Lencz
  • Singapore Institute of Mental Health
  • Zucker Hillside Hospital
  • Broad Institute
  • University of Edinburgh
  • University of Southern California
  • Yale University
  • Icahn School of Medicine at Mount Sinai
  • University of Oslo
  • University of Bergen
  • University of Helsinki
  • Wellcome Trust
  • Helsinki University Central Hospital
  • National Institute for Health and Welfare
  • Folkhalsan
  • Martin Luther University Halle-Wittenberg
  • VA Medical Center
  • University of Crete
  • Brigham and Women’s Hospital
  • University of Manchester
  • Manchester Metropolitan University
  • Duke University
  • Imperial College London
  • Helix Inc.
  • University of Toronto
  • National and Kapodistrian University of Athens
  • University Mental Health Research Institute
  • Theodor-Theohari Cozzika Foundation
  • Johns Hopkins University
  • University of California at Los Angeles
  • Stanford University
  • University of Oregon
  • 23andMe Inc.
  • National Institutes of Health
  • University of Galway
  • Trinity College Dublin
  • University of Colorado Boulder
  • Hofstra North Shore-Long Island Jewish School of Medicine
  • Northwell Health System

Research output: Contribution to journalArticlepeer-review

83 Scopus citations

Abstract

Susceptibility to schizophrenia is inversely correlated with general cognitive ability at both the phenotypic and the genetic level. Paradoxically, a modest but consistent positive genetic correlation has been reported between schizophrenia and educational attainment, despite the strong positive genetic correlation between cognitive ability and educational attainment. Here we leverage published genome-wide association studies (GWASs) in cognitive ability, education, and schizophrenia to parse biological mechanisms underlying these results. Association analysis based on subsets (ASSET), a pleiotropic meta-analytic technique, allowed jointly associated loci to be identified and characterized. Specifically, we identified subsets of variants associated in the expected (“concordant”) direction across all three phenotypes (i.e., greater risk for schizophrenia, lower cognitive ability, and lower educational attainment); these were contrasted with variants that demonstrated the counterintuitive (“discordant”) relationship between education and schizophrenia (i.e., greater risk for schizophrenia and higher educational attainment). ASSET analysis revealed 235 independent loci associated with cognitive ability, education, and/or schizophrenia at p < 5 × 10−8. Pleiotropic analysis successfully identified more than 100 loci that were not significant in the input GWASs. Many of these have been validated by larger, more recent single-phenotype GWASs. Leveraging the joint genetic correlations of cognitive ability, education, and schizophrenia, we were able to dissociate two distinct biological mechanisms—early neurodevelopmental pathways that characterize concordant allelic variation and adulthood synaptic pruning pathways—that were linked to the paradoxical positive genetic association between education and schizophrenia. Furthermore, genetic correlation analyses revealed that these mechanisms contribute not only to the etiopathogenesis of schizophrenia but also to the broader biological dimensions implicated in both general health outcomes and psychiatric illness.

Original languageEnglish
Pages (from-to)334-350
Number of pages17
JournalAmerican Journal of Human Genetics
Volume105
Issue number2
DOIs
StatePublished - Aug 1 2019

Keywords

  • GWAS
  • cognitive ability
  • educational attainment
  • genetic correlation
  • pathways
  • pleiotropy
  • schizophrenia

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