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Updated: May 14, 2026

Mapping Alzheimer's Disease Variants to Their Target Genes Using Computational Analysis of Chromatin Configuration
Published on: January 9, 2020
Genetic association study using GWAS and Mendelian randomization to central nervous system comorbidities between
Shinan Li1, Aihui Liu2, Hongyang Jiang3
1School of Pharmacy, Zhejiang University of Technology, Hangzhou, Zhejiang, China.; Center for General Practice Medicine, Department of Rheumatology and Immunology, Zhejiang Provincial People's Hospital, Affiliated People's Hospital, Hangzhou Medical College, Hangzhou, Zhejiang, China.; Zhejiang Provincial Key Laboratory of Traditional Chinese Medicine Cultivation for Arthritis Diagnosis and Treatment, Hangzhou, Zhejiang Province, China..
Background:
Multisite chronic pain (MCP) and major depressive disorder (MDD) exhibit significant clinical relevance. However, the central nervous system comorbidity mechanism and the shared genetic risk mechanisms remain poorly elucidated. This study aims to systematically investigate the neurobiological and genetic correlation features between MCP and MDD.
Method:
Leveraging a multidimensional genetic framework, we integrated GWAS data for MCP (UK Biobank, UKB), MDD (Psychiatric Genomics Consortium, PGC), and ENIGMA neuroimaging data to investigate their genetic-neurobiological interplay. Initially, genome-wide genetic correlations were evaluated using Linkage Disequilibrium Score Regression (LDSC). Next, the GWAS Pairwise (GWAS-PW) method was employed to identify local genetic association regions, complemented by functional annotation through the FUMA platform. Lastly, Mendelian randomization (MR) mediation models were applied to explore the mediating effects of brain structure.
Result:
LDSC analysis revealed a significant genetic correlation between MCP and MDD (rg = 0.53, P = 4.1 ×10-45). GWAS-PW method identified 18 genomic regions associated with both MCP and MDD. FUMA functional annotation prioritized seven key genes (e.g., DCC and TCF4) implicated in neurodevelopmental and synaptic regulation pathways. Additionally, mendelian mediation analysis of specific brain regions, such as the isthmus cingulate cortex, play a mediating role in the comorbid pathogenesis of MCP and MDD.
Conclusion:
This study revealed that MCP-MDD comorbidity arises from genome-wide shared neurodevelopmental loci, structural abnormalities, and dysregulated coordination among the default mode, central executive, and sensorimotor networks, collectively forming its neurobiological basis.
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