Mapping the serum proteome to neurological diseases using whole genome sequencing

Author:

Png GraceORCID,Barysenka Andrei,Repetto Linda,Navarro PauORCID,Shen XiaORCID,Pietzner MaikORCID,Wheeler EleanorORCID,Wareham Nicholas J.ORCID,Langenberg ClaudiaORCID,Tsafantakis Emmanouil,Karaleftheri Maria,Dedoussis George,Mälarstig AndersORCID,Wilson James F.ORCID,Gilly Arthur,Zeggini EleftheriaORCID

Abstract

AbstractDespite the increasing global burden of neurological disorders, there is a lack of effective diagnostic and therapeutic biomarkers. Proteins are often dysregulated in disease and have a strong genetic component. Here, we carry out a protein quantitative trait locus analysis of 184 neurologically-relevant proteins, using whole genome sequencing data from two isolated population-based cohorts (N = 2893). In doing so, we elucidate the genetic landscape of the circulating proteome and its connection to neurological disorders. We detect 214 independently-associated variants for 107 proteins, the majority of which (76%) are cis-acting, including 114 variants that have not been previously identified. Using two-sample Mendelian randomisation, we identify causal associations between serum CD33 and Alzheimer’s disease, GPNMB and Parkinson’s disease, and MSR1 and schizophrenia, describing their clinical potential and highlighting drug repurposing opportunities.

Publisher

Springer Science and Business Media LLC

Subject

General Physics and Astronomy,General Biochemistry, Genetics and Molecular Biology,General Chemistry

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