Proteogenomic analysis of human cerebrospinal fluid identifies neurologically relevant regulation and informs causal proteins for Alzheimer’s disease

Author:

Cruchaga Carlos1,Western Dan2ORCID,Timsina Jigyasha2,Wang Lihua1,Wang Ciyang1,Yang Chengran3ORCID,Ali Muhammad1,Beric Aleksandra1,Gorijala Priyanka1,Kohlfeld Patsy4ORCID,Budde JohnORCID,Levey Allan5ORCID,Morris John6,Perrin Richard3ORCID,Ruiz Agustín7ORCID,Marquié Marta8,Boada Mercè9,de Rojas Itziar8,Rutledge Jarod10ORCID,Oh Hamilton10,Wilson Edward10ORCID,Guen Yann Le10ORCID,Alvarez Ignacio11ORCID,Aguilar Miquel12,Greicius Michael13,Pastor Pau14ORCID,Pulford David15,Ibanez Laura3,Wyss-Coray Tony10ORCID,Sung Yun Ju3,Phillips Bridget3ORCID

Affiliation:

1. Washington University School of Medicine

2. Department of Psychiatry, Washington University School of Medicine, St. Louis, MO, USA

3. Washington University in St. Louis

4. Washington University School of Medicine, St Louis, MO, USA

5. Emory

6. Knight Alzheimer Disease Research Center

7. Fundació ACE

8. Universitat Internacional de Catalunya

9. Memory Clinic of Fundaciò ACE, Catalan Institute of Applied Neurosciences

10. Stanford University

11. Fundació Docència i Recerca MútuaTerrassa, Terrassa, Barcelona, Spain

12. University Hospital Mutua Terrassa

13. Stanford School of Medicine

14. University Hospital Germans Trias i Pujol

15. GlaxoSmithKline

Abstract

Abstract The integration of quantitative trait loci (QTL) with disease genome-wide association studies (GWAS) has proven successful at prioritizing candidate genes at disease-associated loci. QTL mapping has mainly been focused on multi-tissue expression QTL or plasma protein QTL (pQTL). Here we generated the largest-to-date cerebrospinal fluid (CSF) pQTL atlas by analyzing 7,028 proteins in 3,107 samples. We identified 3,373 independent study-wide associations for 1,961 proteins, including 2,448 novel pQTLs of which 1,585 are unique to CSF, demonstrating unique genetic regulation of the CSF proteome. In addition to the established chr6p22.2-21.32 HLA region, we identified pleiotropic regions on chr3q28 near OSTN and chr19q13.32 near APOE that were enriched for neuron-specificity and neurological development. We also integrated this pQTL atlas with the latest Alzheimer’s disease (AD) GWAS through PWAS, colocalization and Mendelian Randomization and identified 42 putative causal proteins for AD, 15 of which have drugs available. Finally, we developed a proteomics-based risk score for AD that outperforms genetics-based polygenic risk scores. These findings will be instrumental to further understand the biology and identify causal and druggable proteins for brain and neurological traits.

Publisher

Research Square Platform LLC

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