Genome-wide Association Analysis of Schizophrenia and Vitamin D Levels Shows Shared Genetic Architecture and Identifies Novel Risk Loci

Author:

Jaholkowski Piotr1ORCID,Hindley Guy F L12ORCID,Shadrin Alexey A13,Tesfaye Markos14,Bahrami Shahram1,Nerhus Mari156,Rahman Zillur1,O’Connell Kevin S1,Holen Børge1,Parker Nadine1,Cheng Weiqiu1ORCID,Lin Aihua1,Rødevand Linn1,Karadag Naz1ORCID,Frei Oleksandr17,Djurovic Srdjan89,Dale Anders M10111213,Smeland Olav B1ORCID,Andreassen Ole A13

Affiliation:

1. NORMENT, Centre for Mental Disorders Research, Division of Mental Health and Addiction, Oslo University Hospital, and Institute of Clinical Medicine, University of Oslo , Oslo , Norway

2. Institute of Psychiatry, Psychology and Neuroscience, King’s College London , London , UK

3. KG Jebsen Centre for Neurodevelopmental Disorders, University of Oslo and Oslo University Hospital , Oslo , Norway

4. Department of Psychiatry, St. Paul’s Hospital Millennium Medical College , Addis Ababa , Ethiopia

5. Department of Special Psychiatry, Akershus University Hospital , Lørenskog , Norway

6. Division of Health Services Research and Psychiatry , Institute of Clinical Medicine, Campus Ahus, University of Oslo, Oslo , Norway

7. Center for Bioinformatics, Department of Informatics, University of Oslo , Oslo , Norway

8. Department of Medical Genetics, Oslo University Hospital , Oslo , Norway

9. NORMENT Centre, Department of Clinical Science, University of Bergen , Bergen , Norway

10. Department of Radiology, University of California, San Diego , La Jolla, CA

11. Multimodal Imaging Laboratory, University of California San Diego , La Jolla, CA

12. Department of Psychiatry, University of California, San Diego , La Jolla, CA

13. Department of Neurosciences, University of California San Diego , La Jolla, CA

Abstract

Abstract Low vitamin D (vitD) levels have been consistently reported in schizophrenia (SCZ) suggesting a role in the etiopathology. However, little is known about the role of underlying shared genetic mechanisms. We applied a conditional/conjunctional false discovery rate approach (FDR) on large, nonoverlapping genome-wide association studies for SCZ (N cases = 53 386, N controls = 77 258) and vitD serum concentration (N = 417 580) to evaluate shared common genetic variants. The identified genomic loci were characterized using functional analyses and biological repositories. We observed cross-trait SNP enrichment in SCZ conditioned on vitD and vice versa, demonstrating shared genetic architecture. Applying the conjunctional FDR approach, we identified 72 loci jointly associated with SCZ and vitD at conjunctional FDR < 0.05. Among the 72 shared loci, 40 loci have not previously been reported for vitD, and 9 were novel for SCZ. Further, 64% had discordant effects on SCZ-risk and vitD levels. A mixture of shared variants with concordant and discordant effects with a predominance of discordant effects was in line with weak negative genetic correlation (rg = −0.085). Our results displayed shared genetic architecture between SCZ and vitD with mixed effect directions, suggesting overlapping biological pathways. Shared genetic variants with complex overlapping mechanisms may contribute to the coexistence of SCZ and vitD deficiency and influence the clinical picture.

Funder

Research Council of Norway

European Economic Area and Norway

EU’s Horizon 2020 Research and Innovation

US NIMH

Publisher

Oxford University Press (OUP)

Subject

Psychiatry and Mental health

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