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Updated: Sep 24, 2026

Mapping Alzheimer's Disease Variants to Their Target Genes Using Computational Analysis of Chromatin Configuration
Published on: January 9, 2020
APOE-centered transcriptional convergence underlying diverse dementia subtypes
Zhi-Jie Xu1,2,3, Jie Ma1,3, Guido M Giuffrè4,5
1Center of Rehabilitation Medicine, Yueyang Hospital of Integrated Traditional Chinese and Western Medicine, Shanghai University of Traditional Chinese Medicine, Shanghai, China.
Abstract:
BackgroundDementia subtypes exhibit diverse clinical and pathological features, yet may share convergent molecular underpinnings. Identifying these common pathways is critical for unified therapeutic strategies.ObjectiveTo delineate the shared genetic architecture and convergent molecular pathways underlying diverse dementia subtypes, and to mechanistically characterize the structural and functional impacts of key risk variants, thereby establishing a unified framework for precision therapeutic development.MethodsWe applied multivariate genomic structural equation modeling to six dementia-related genome-wide association studies (GWAS), followed by integrative transcriptome-wide association studies (TWAS) across tissues and cell types. We combined AlphaFold3-predicted structures, molecular dynamics simulations, and deep learning-based stability analyses to assess functional impacts of risk variants.ResultsWe uncovered a shared genetic architecture underlying dementia, identifying 60 novel risk loci. APOE emerged as the central hub, linking lipid metabolism and immune dysregulation. Missense variants in APOE (p.Arg176Cys), BIN2 (p.Glu190Lys), and FOXO1 (p.Asp82His/Tyr/Asn) induced charge-dependent conformational destabilization, impairing lipid transport, microglial phagocytosis, and transcriptional control.ConclusionsOur multiscale framework bridges population genetics with molecular pathophysiology, establishing APOE-centered transcriptional dysregulation as a unifying mechanism in dementia. These findings nominate convergent pathways, particularly lipid-immune crosstalk, as high-priority targets for precision therapeutics.
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