Findings support cg05917797 as a reproducible blood-based epigenetic marker of long-term dementia risk and higher methylation at cg05917797 was associated with lower Braak stage in temporal gyrus and cerebellum.
Abstract
Blood-based DNA methylation may help identify biological changes related to dementia risk before clinical symptoms appear. We conducted an epigenome-wide association study of incident all-cause dementia in 5,999 cognitively healthy women from the Women's Health Initiative Memory Study, 777 of whom developed dementia over up to 25 years of follow-up. Baseline blood DNA methylation was tested for association with time to dementia. One CpG site, cg05917797, was significantly associated with dementia risk, with higher methylation linked to lower risk. This association was only minimally changed after accounting for APOE {varepsilon}4 carrier status, plasma p-tau217, and epigenetic aging measures. cg05917797 also replicated in meta-analysis of four independent prospective cohorts including 10,916 participants and 413 incident dementia cases. In post-mortem brain methylation datasets, higher methylation at cg05917797 was associated with lower Braak stage in temporal gyrus and cerebellum. In meta-analysis of all five prospective cohorts, including 16,915 participants and 1,190 dementia cases, cg05917797 remained the leading association, and three additional CpGs were identified for further study. These findings support cg05917797 as a reproducible blood-based epigenetic marker of long-term dementia risk.
Alzheimer’s disease (AD) is driven by genetic and epigenetic factors. A knowledge gap remains in applying DNA methylation (DNAm) to capture AD-specific signatures. We developed the AD DNA Methylation Index (AD-DMI), a brain-derived risk index constructed from 100 CpG sites identified by elastic-net logistic regression...
N. Jiakponnah, I. Biose, Tracy Fischer et al.· NPJ dementia· 1 citation
Amyotrophic lateral sclerosis (ALS) is a fatal neurodegenerative disorder whose genetic architecture and underlying molecular mechanisms remain incompletely understood, particularly in sporadic disease. To investigate whether genetically regulated DNA methylation may help interpret ALS susceptibility, we conducted a me...
Tian-Ying Zhao, M. Hoffman, Gang Wu et al.· medRxiv· 0 citations
DNA methylation-based signatures were associated with incident ASCVD and modestly improved risk prediction beyond that of traditional risk factors, and an agnostic probe reliability-based approach was developed.
A. Barad, D. Khodasevich, P. F. Kho et al.· medRxiv· 0 citations
Understanding of the genetic architecture of AD in the context of its main genetic driver is improved, and APOE-stratified insights may help understand and overcome side effects, inform clinical trial enrollment strategies, and create the scientific basis for targeted, mechanism-driven therapies in neurodegenerative di...
J. Thomassen, H. Leonard, Brittany Ulms et al.· Nature Genetics· 0 citations
ABSTRACT Objective To identify inflammatory analytes in cerebrospinal fluid (CSF) and plasma associated with cognitive decline in cognitively normal (CN) older adults at risk for Alzheimer's disease (AD). Methods In a longitudinal study of 118 CN older adults (65–80 years, 54% APOE ε4, 26% preclinical AD), 1331 CSF and...
Jagan A. Pillai, Audrey Zhu, Chun-Xuan Ma et al.· Annals of Clinical and Trans...· 0 citations
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