Functional variants identify sex-specific genes and pathways in Alzheimer’s Disease

Author:

Bourquard Thomas,Lee KwanghyukORCID,Al-Ramahi Ismael,Pham Minh,Shapiro DillonORCID,Lagisetty Yashwanth,Soleimani Shirin,Mota Samantha,Wilhelm KevinORCID,Samieinasab Maryam,Kim Young Won,Huh Eunna,Asmussen Jennifer,Katsonis PanagiotisORCID,Botas JuanORCID,Lichtarge OlivierORCID

Abstract

AbstractThe incidence of Alzheimer’s Disease in females is almost double that of males. To search for sex-specific gene associations, we build a machine learning approach focused on functionally impactful coding variants. This method can detect differences between sequenced cases and controls in small cohorts. In the Alzheimer’s Disease Sequencing Project with mixed sexes, this approach identified genes enriched for immune response pathways. After sex-separation, genes become specifically enriched for stress-response pathways in male and cell-cycle pathways in female. These genes improve disease risk prediction in silico and modulate Drosophila neurodegeneration in vivo. Thus, a general approach for machine learning on functionally impactful variants can uncover sex-specific candidates towards diagnostic biomarkers and therapeutic targets.

Funder

U.S. Department of Health & Human Services | NIH | National Institute on Aging

Publisher

Springer Science and Business Media LLC

Subject

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

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