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Genetic Analysis of the X Chromosome Associates Loci with Progression of Parkinson's Disease
Journal article   Peer reviewed

Genetic Analysis of the X Chromosome Associates Loci with Progression of Parkinson's Disease

Yu Liao, Hao Wu, Junhao Wang, Jean-Christophe Corvol, Jodi Maple-Grødem, Meghan C Campbell, Alexis Elbaz, Alexis Brice, Michael A Schwarzschild, Pille Taba, …
Movement disorders, Early View
2025
PMID: 40459076

Abstract

X‐chromosome‐wide survival study progression Parkinson's disease eQTL
Background Genetic variants on the X chromosome have been linked to susceptibility for Parkinson's disease (PD), but their roles in disease progression remain unclear. Objectives This study investigated associations between X chromosome variants and longitudinal cognitive decline or motor impairment in patients with PD. Methods We conducted combined (male + female) and stratified X-chromosome-wide survival studies (XWSS) in 4467 patients with PD with 33,406 longitudinal visits. Cognitive decline was defined as global cognitive impairment (GCI, Mini Mental State Exam score ≤25), whereas motor impairment was evaluated by Hoehn and Yahr stage 3 (HY3). Expression quantitative trait locus (eQTL) and genetic colocalization analyses were systematically performed. Results We identified 40 common variants in the X-chromosome-wide screen associated with longitudinal progression of PD with P-value <9.27 × 10−6, including 11 independent loci associated with cognitive decline and two with motor impairment. The rs142724191 and rs144112368 variants were associated with cognitive decline in both combined and male-only analyses. rs111708875 reached genome-wide significance for motor progression in female cases (hazard ratio [HR] = 3.98, 95% confidence interval [CI]:  2.54–6.25) with P-value = 1.84 × 10−9. All these variants were independent with X chromosome susceptibility loci associated with PD, Alzheimer's disease, or Lewy body dementia. Conclusions Our XWSS identified novel genetic progression-associated loci on the X chromosome for PD, providing new insights into the X chromosome-linked genetic underpinnings of PD. © 2025 International Parkinson and Movement Disorder Society.

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Collaboration types
Domestic collaboration
International collaboration
Citation topics
1 Clinical & Life Sciences
1.189 Genome Studies
1.189.455 Genome-Wide Association Studies
Web Of Science research areas
Clinical Neurology
ESI research areas
Neuroscience & Behavior
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