Enhancing discovery of genetic variants for PTSD through integration of quantitative phenotypes and trauma exposure information

Adam X. Maihofer,Karmel W. Choi,Jonathan R. I. Coleman,Nikolaos P. Daskalakis,Christy A. Denckla,Elizabeth Ketema,Rajendra A. Morey,Renato Polimanti,Andrew Ratanatharathorn,Katy Torres,Aliza P. Wingo,Clement C. Zai,Allison E. Aiello,Lynn M. Almli,Ananda B. Amstadter,Søren Bo Andersen,Ole A. Andreassen,Paul A. Arbisi,Allison E. Ashley-Koch,S. Bryn Austin,Esmina Avdibegović,Anders D. Børglum,Dragan Babić, Marie Bμkvad-Hansen,Dewleen G. Baker,Jean C. Beckham,Laura J. Bierut,Jonathan Ian Bisson,Marco P. Boks,Elizabeth A. Bolger,Bekh Bradley,Meghan M Brashear,Gerome Breen,Richard A. Bryant,A.C. Bustamante,Jonas Bybjerg-Grauholm,Joseph R. Calabrese,José Miguel Caldas-de-Almeida,Chia-Yen Chen,Anders M. Dale,Shareefa Dalvie,Jürgen Deckert,Douglas L. Delahanty,Michelle F. Dennis,Seth G. Disner,Katharina Domschke,Laramie E. Duncan,Alma Dzubur Kulenovic,Christopher R. Erbes,Alexandra Evans,Lindsay A. Farrer,Norah C. Feeny,Janine D. Flory,David Forbes,Carol E. Franz,Sandro Galea,Melanie E. Garrett,Aarti Gautam,Bizu Gelaye,Joel Gelernter,Elbert Geuze,Charles F. Gillespie,Aferdita Goci,Scott D. Gordon,Guia Guffanti,Rasha Hammamieh,Michael A. Hauser,Andrew C. Heath,Sian M. J. Hemmings,David M. Hougaard,Miro Jakovljević,Marti Jett,Eric O. Johnson,Ian Jones,Tanja Jovanovic,Xuejun Qin,Karen-Inge Karstoft,Milissa L. Kaufman,Ronald C. Kessler,Alaptagin Khan,Nathan A. Kimbrel,Anthony P. King,Nastassja Koen,Henry R. Kranzler,William S. Kremen,Bruce R. Lawford,Lauren A.M. Lebois,Catrin Lewis,Israel Liberzon,Sarah D. Linnstaedt,Mark W. Logue,Adriana Lori,Bozo Lugonja,Jurjen J. Luykx,Michael J. Lyons,Jessica L. Maples-Keller,Charles R. Marmar,Nicholas G. Martin,Douglas Maurer,Matig R. Mavissakalian

Biological Psychiatry(2021)

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摘要
Abstract Background Posttraumatic stress disorder (PTSD) is heritable and a potential consequence of exposure to traumatic stress. Evidence suggests that a quantitative approach to PTSD phenotype measurement and incorporation of lifetime trauma exposure (LTE) information could enhance the discovery power of PTSD genome-wide association studies (GWAS). Methods GWAS on PTSD symptoms was performed in 51 cohorts followed by a fixed-effects meta-analysis (N = 182,199 European Ancestry participants). A GWAS of LTE burden was performed in the UK Biobank cohort (N = 132,988). Genetic correlations were evaluated with LD-score regression. Multivariate analysis was performed using Multi-Trait Analysis of GWAS. Functional mapping and annotation of leading loci was performed with FUMA. Replication was evaluated using the Million Veteran Program (MVP) GWAS of PTSD total symptoms. Results GWAS of PTSD symptoms and LTE burden identified 5 and 6 independent genome-wide significant loci, respectively. There was a 72% genetic correlation between PTSD and LTE. PTSD and LTE showed largely similar patterns of genetic correlation with other traits, albeit with some distinctions. Adjusting PTSD for LTE reduced PTSD heritability by 31%. Multivariate analysis of PTSD and LTE increased the effective sample size of the PTSD GWAS by 20% and identified 4 additional loci. Four out of these 9 PTSD loci were independently replicated in MVP. Conclusion Through using a quantitative trait measure of PTSD, we identify novel risk loci not previously identified using prior case/control analyses. PTSD and LTE have a high genetic overlap that can be leveraged to increase discovery power through multivariate methods.
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