RRC ID 57229
著者 Ji XR, Cheng KC, Chen YR, Lin TY, Cheung CHA, Wu CL, Chiang HC.
タイトル Dysfunction of different cellular degradation pathways contributes to specific β-amyloid42-induced pathologies.
ジャーナル FASEB J
Abstract The endosomal-lysosomal system (ELS), autophagy, and ubiquitin-proteasome system (UPS) are cellular degradation pathways that each play a critical role in the removal of misfolded proteins and the prevention of the accumulation of abnormal proteins. Recent studies on Alzheimer's disease (AD) pathogenesis have suggested that accumulation of aggregated β-amyloid (Aβ) peptides in the AD brain results from a dysfunction in these cellular clearance systems. However, the specific roles of these pathways in the removal of Aβ peptides and the pathogenesis underlying AD are unclear. Our in vitro and in vivo genetic approaches revealed that ELS mainly removed monomeric β-amyloid42 (Aβ42), while autophagy and UPS clear oligomeric Aβ42. Although overproduction of phosphatidylinositol 4-phosphate-5 increased Aβ42 clearance, it reduced the life span of Aβ42 transgenic flies. Our behavioral studies further demonstrated impaired autophagy and UPS-enhanced Aβ42-induced learning and memory deficits, but there was no effect on Aβ42-induced reduction in life span. Results from genetic fluorescence imaging showed that these pathways were damaged in the following order: UPS, autophagy, and finally ELS. The results of our study demonstrate that different degradation pathways play distinct roles in the removal of Aβ42 aggregates and in disease progression. These findings also suggest that pharmacologic treatments that are designed to stimulate cellular degradation pathways in patients with AD should be used with caution.-Ji, X.-R., Cheng, K.-C., Chen, Y.-R., Lin, T.-Y., Cheung, C. H. A., Wu, C.-L., Chiang, H.-C. Dysfunction of different cellular degradation pathways contributes to specific β-amyloid42-induced pathologies.
巻・号 32(3)
ページ 1375-1387
公開日 2018-3-1
DOI 10.1096/fj.201700199RR
PII fj.201700199RR
PMID 29127191
MeSH Alzheimer Disease / genetics Alzheimer Disease / metabolism* Amyloid beta-Peptides / genetics Amyloid beta-Peptides / metabolism* Animals Animals, Genetically Modified Autophagy* Disease Models, Animal Drosophila melanogaster Humans Peptide Fragments / genetics Peptide Fragments / metabolism* Proteasome Endopeptidase Complex / genetics Proteasome Endopeptidase Complex / metabolism* Proteolysis* Ubiquitin / genetics Ubiquitin / metabolism*
IF 5.391
引用数 4
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