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Manifestations of genetic risk for Alzheimer’s Disease in the blood: a cross-sectional multi-omic analysis in healthy adults aged 18-90+

Authors :
Todd E. Golde
Nathan D. Price
Cory C. Funk
Brian W. Kunkle
Adam C. Naj
Laura Heath
Noa Rappaport
Nilufer Ertekin-Taner
Sergey A. Kornilov
Lara M. Mangravite
Andrew T. Magis
Leroy Hood
Benjamin A. Logsdon
John C. Earls
Jennifer C. Lovejoy
Eden R. Martin
Publication Year :
2021
Publisher :
Cold Spring Harbor Laboratory, 2021.

Abstract

Deeply phenotyped cohort data can elucidate differences associated with genetic risk for common complex diseases across an age spectrum. Previous work has identified genetic variants associated with Alzheimer’s disease (AD) risk from large-scale genome-wide association study meta-analyses. To explore effects of known AD-risk variants, we performed a phenome-wide association study on ~2000 clinical, proteomic, and metabolic blood-based analytes obtained from 2,831 cognitively normal adult clients of a consumer-based scientific wellness company. Results uncovered statistically significant SNP-analyte associations for five genetic variants after correction for multiple testing (for SNPs in or nearNYAP1, ABCA7, INPP5D, andAPOE). These effects were detectable from early adulthood. Sex modified the effects of four genetic variants, with multiple interrelated immune-modulating effects associated with thePICALMvariant. Sex-stratified GWAS results from an independent AD case-control meta-analysis supported sexspecific disease effects of thePICALMvariant, highlighting the importance of sex as a biological variable. These analyses support evidence from previous functional genomics studies in the identification of a causal variant within thePILRAgene. Taken together, this study highlights clues to the earliest effects of AD genetic risk variants in individuals where disease symptoms have not (yet) arisen.

Details

Database :
OpenAIRE
Accession number :
edsair.doi...........a39b12c3000fbeeb0cd2cc91523e15ec
Full Text :
https://doi.org/10.1101/2021.03.26.437267