Key result
Genome-wide association meta-analysis revealed novel Alzheimer's disease genetic signals (ANKRD31-rs4704171 and NDUFAF6-rs10098778) and confirmed SCIMP-rs7225151 and CD33-rs3865444.
Why the study?
Large variability among Alzheimer's disease cases might impact genetic discoveries and complicate dissection of underlying biological pathways.
Meta-Analysis
Yes
The study identifies novel genetic loci for Alzheimer's disease and highlights the regulation of vasculature as a prominent causal component of probable AD.
Stratifying AD cases by endophenotypes may sharpen genetic signals; leaves open whether vascular pathways define distinct probable AD subtypes.
INTRODUCTION: Large variability among Alzheimer's disease (AD) cases might impact genetic discoveries and complicate dissection of underlying biological pathways. METHODS: Genome Research at Fundacio ACE (GR@ACE) is a genome-wide study of dementia and its clinical endophenotypes, defined based on AD's clinical certainty and vascular burden. We assessed the impact of known AD loci across endophenotypes to generate loci categories. We incorporated gene coexpression data and conducted pathway analysis per category. Finally, to evaluate the effect of heterogeneity in genetic studies, GR@ACE series were meta-analyzed with additional genome-wide association study data sets. RESULTS: We classified known AD loci into three categories, which might reflect the disease clinical heterogeneity. Vascular processes were only detected as a causal mechanism in probable AD. The meta-analysis strategy revealed the ANKRD31-rs4704171 and NDUFAF6-rs10098778 and confirmed SCIMP-rs7225151 and CD33-rs3865444. DISCUSSION: The regulation of vasculature is a prominent causal component of probable AD. GR@ACE meta-analysis revealed novel AD genetic signals, strongly driven by the presence of clinical heterogeneity in the AD series.
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Moreno–Grau et al. (2019) conducted a meta-analysis in Alzheimer's disease and dementia. Genetic loci was evaluated on novel loci associated with Alzheimer's disease. Genome-wide association meta-analysis revealed novel Alzheimer's disease genetic signals (ANKRD31-rs4704171 and NDUFAF6-rs10098778) and confirmed SCIMP-rs7225151 and CD33-rs3865444.
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