Publication
Title
An evaluation of the impact of MAPT, SNCA and APOE on the burden of Alzheimer's and Lewy body pathology
Author
Abstract
Purpose The study investigates the effects of genetic factors on the pathology of Alzheimer's disease (AD) and Lewy body (LB) diseases, including Parkinson's disease and dementia with Lewy bodies. Methods A multicentre autopsy series (762 brain samples) with AD, LB or vascular pathology was examined. The effects of the tau gene (MAPT) H1 haplotype, the H1 specific SNP rs242557, APOE and the alpha-synuclein gene (SNCA) 39UTR SNP rs356165 on the burden of AD and LB pathology were assessed. Neurofibrillary tangles (NFTs) were counted in four brain regions, senile plaques in five and LBs in four. Braak NFT stage, brain weight and presence of vascular pathology were also documented. Results MAPT H1 associated with lower counts of NFTs in the middle frontal (p<0.001) and inferior parietal (p=0.005) cortices, and also with lower counts of senile plaques in the motor cortex (p=0.001). Associations of MAPT H1 with increased LB counts in the middle frontal cortex (p=0.011) and inferior parietal cortex (p=0.033) were observed but were not significant after multiple testing adjustment. The APOE 34 allele was strongly associated with overall Alzheimer type pathology (all p <= 0.001). SNCA rs356165 and the MAPT H1 specific SNP rs242557 did not associate with AD or LB pathology. Conclusion This study shows for the first time that MAPT H1 is associated with reduced Alzheimer type pathology which could have important implications for the understanding of disease mechanisms and their genetic determinants.
Language
English
Source (journal)
Journal of neurology, neurosurgery and psychiatry. - London
Publication
London : 2012
ISSN
0022-3050
DOI
10.1136/JNNP-2011-301413
Volume/pages
83 :4 (2012) , p. 424-429
ISI
000301296600019
Full text (Publisher's DOI)
UAntwerpen
Faculty/Department
Research group
Publication type
Subject
External links
Web of Science
Record
Identifier
Creation 25.09.2019
Last edited 28.08.2024
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