The Psychiatric Genomics Consortium (http://pgc.unc.edu), now in its eighth year, is one of the most innovative experiments in the history of psychiatry. We have unified much of the field to enable rapid progress in elucidating the genetic basis of psychiatric disorders. We have 800+ investigators from 36 countries and >400K subjects. The PGC has attracted a cadre of outstanding scientists whose careers center on our work. The PGC has published 17 main papers plus 31 secondary analysis/methods development papers. The most important was the landmark Nature paper identifying 108 loci for schizophrenia (SCZ). Due to our open-source approach, there are 75+ papers that use PGC results, and we know of numerous groups that are using our findings to direct basic and applied research (including therapeutic development). More work is needed. Large amounts of new data will be available to the PGC in the next five years (largely without NIMH funding). We have developed a rigorous set of approaches that are yielding discoveries for all of the initial five disorders (which led to adding four new disorders). We thus have the unique opportunity to rapidly and efficiently increase our knowledge of common and rare variation in order to understand the causes and comorbidities of major psychiatric disorders. Our overarching goal is to identify actionable variation via the empirical evaluation of the etiological, clinical, nosological, therapeutic, and biological significance of our genomic findings. We will continue the highly successful work of the PGC in understanding the roles of common genetic variation by: (a) comprehensively analyzing historically large GWA samples for nine major psychiatric disorders; (b) evaluating how genetic risk scores impact development and clinical symptom patterns; (c) understand the genetic relationship among psychiatric disorders and across psychiatric disorders and many other CNS diseases. We will enhance our work on the discovery of rare variation by: (d) conducting mega-analyses of copy number variation across nine psychiatric disorders; (e) efficiently and inexpensively re-sequencing regions implicated by GWAS (200 candidate genes in 20,000 subjects); and (f) using the hundreds of clinicians in the PGC, identify rare densely affected pedigrees to enable searches for rare variants of strong effect. Successful completion of this body of work will advance knowledge of the genetic basis of multiple psychiatric disorders. Our goal is to deliver actionable findings, genomic results tht (a) reveal the fundamental biology, (b) inform clinical practice, and (c) deliver new therapeutic targets. This is the central idea of the PGC: to convert the family history risk factor into biologically, clinically, and therapeutically meaningful insights. We have leveraged external funding from multiple sources to minimize NIMH budgetary requests.

Public Health Relevance

The Psychiatric Genomics Consortium (PGC), now in its eighth year, is one of the most innovative experiments in the history of psychiatry. We have unified much of psychiatric genomics to enable rapid progress in discovering the genetic basis of psychiatric disorders. We propose new aims to identify 'actionable' variation, findings with clear etiological, clinical, nosological, therapeutic, and biological significance.

Agency
National Institute of Health (NIH)
Institute
National Institute of Mental Health (NIMH)
Type
Research Project--Cooperative Agreements (U01)
Project #
5U01MH109514-03
Application #
9462936
Study Section
Special Emphasis Panel (ZRG1)
Program Officer
Addington, Anjene M
Project Start
2016-06-20
Project End
2021-03-31
Budget Start
2018-05-05
Budget End
2019-03-31
Support Year
3
Fiscal Year
2018
Total Cost
Indirect Cost
Name
Cardiff University
Department
Type
DUNS #
228373189
City
Cardiff
State
Country
United Kingdom
Zip Code
CF24 0DE
Polimanti, Renato; Gelernter, Joel; Stein, Dan J (2018) Genetically determined schizophrenia is not associated with impaired glucose homeostasis. Schizophr Res 195:286-289
Sullivan, Patrick F; Agrawal, Arpana; Bulik, Cynthia M et al. (2018) Psychiatric Genomics: An Update and an Agenda. Am J Psychiatry 175:15-27
Salvatore, Jessica E; Han, Shizhong; Farris, Sean P et al. (2018) Beyond genome-wide significance: integrative approaches to the interpretation and extension of GWAS findings for alcohol use disorder. Addict Biol :
Van der Auwera, Sandra; Peyrot, Wouter J; Milaneschi, Yuri et al. (2018) Genome-wide gene-environment interaction in depression: A systematic evaluation of candidate genes: The childhood trauma working-group of PGC-MDD. Am J Med Genet B Neuropsychiatr Genet 177:40-49
Le Hellard, Stéphanie; Wang, Yunpeng; Witoelar, Aree et al. (2017) Identification of Gene Loci That Overlap Between Schizophrenia and Educational Attainment. Schizophr Bull 43:654-664
McLaughlin, Russell L; Schijven, Dick; van Rheenen, Wouter et al. (2017) Genetic correlation between amyotrophic lateral sclerosis and schizophrenia. Nat Commun 8:14774
Polimanti, Renato; Agrawal, Arpana; Gelernter, Joel (2017) Schizophrenia and substance use comorbidity: a genome-wide perspective. Genome Med 9:25
Smeland, Olav B; Frei, Oleksandr; Kauppi, Karolina et al. (2017) Identification of Genetic Loci Jointly Influencing Schizophrenia Risk and the Cognitive Traits of Verbal-Numerical Reasoning, Reaction Time, and General Cognitive Function. JAMA Psychiatry 74:1065-1075
Autism Spectrum Disorders Working Group of The Psychiatric Genomics Consortium (2017) Meta-analysis of GWAS of over 16,000 individuals with autism spectrum disorder highlights a novel locus at 10q24.32 and a significant overlap with schizophrenia. Mol Autism 8:21
Duncan, Laramie; Yilmaz, Zeynep; Gaspar, Helena et al. (2017) Significant Locus and Metabolic Genetic Correlations Revealed in Genome-Wide Association Study of Anorexia Nervosa. Am J Psychiatry 174:850-858

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