Multivariate genome-wide analysis of stress-related quantitative phenotypes

Publication date

2019-12

Authors

Schijven, Dick
Geuze, EORCID 0000-0003-3479-2379ISNI 0000000388968907
Vinkers, Christiaan H.ISNI 0000000390294462
Pulit, Sara
Schür, Remmelt R
Malgaz, Marie
Bekema, Erwin
Medic, Jelena
van der Kust, Kendrick E.
Veldink, JanORCID 0000-0001-5572-9657ISNI 0000000392612911

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Document Type

Article

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taverne

Abstract

Exposure to traumatic stress increases the odds of developing a broad range of psychiatric conditions. Genetic studies targeting multiple stress-related quantitative phenotypes may shed light on mechanisms underlying vulnerability to psychopathology in the aftermath of stressful events. We applied a multivariate genome-wide association study (GWAS) to a unique military cohort (N = 583) in which we measured biochemical and behavioral phenotypes. The availability of pre- and post-deployment measurements allowed to capture changes in these phenotypes in response to stress. For genome-wide significant loci, we performed functional annotation, phenome-wide analysis and quasi-replication in PTSD case-control GWASs. We discovered one genetic variant reaching genome-wide significant association, surviving permutation and sensitivity analyses (rs10100651, p = 9.9 × 10−9). Functional annotation prioritized the genes INTS8 and TP53INP1. A phenome-wide scan revealed a significant association of these same genes with sleeping problems, hypertension and subjective well-being. Finally, a targeted lookup revealed nominally significant association of rs10100651 in a PTSD case-control GWAS in the UK Biobank (p = 0.02). We provide comprehensive evidence from multiple resources hinting at a role of the highlighted genetic variant in the human stress response, marking the power of multivariate genome-wide analysis of quantitative measures in stress research. Future genetic and functional studies can target this locus to further assess its effects on stress mediation and its possible role in psychopathology or resilience.

Keywords

Deployment, GWAS, Hormone, Quantitative phenotype, Questionnaire, Stress, Taverne, Pharmacology, Neurology, Clinical Neurology, Psychiatry and Mental health, Biological Psychiatry, Pharmacology (medical)

Citation

Schijven, D, Geuze, E, Vinkers, C H, Pulit, S L, Schür, R R, Malgaz, M, Bekema, E, Medic, J, van der Kust, K E, Veldink, J H, Boks, M P, Vermetten, E & Luykx, J J 2019, 'Multivariate genome-wide analysis of stress-related quantitative phenotypes', European Neuropsychopharmacology, vol. 29, no. 12, pp. 1354-1364. https://doi.org/10.1016/j.euroneuro.2019.09.012