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Diverse Structural Conversion and Aggregation Pathways of Alzheimer's Amyloid-beta (1-40)

Author(s)
Lin, YuxiSahoo, Bikash R.Ozawa, DaisakuKinoshita, MisakiKang, JuhyeLim, Mi HeeOkumura, MasakiHuh, Yang HoonMoon, EunyoungJang, Jae HyuckLee, Hyun-JuRyu, Ka-YoungHam, SihyunWong, Haing-SikRyu, Kyoung-SeokSugiki, ToshihikoBang, Jeong KyuHoe, Hyang-SookFujiwara, ToshimichiRamamoorthy, AyyalusamyLee, Young-Ho
Issued Date
2019-08
DOI
10.1021/acsnano.9b01578
URI
https://scholarworks.unist.ac.kr/handle/201301/27518
Fulltext
https://pubs.acs.org/doi/10.1021/acsnano.9b01578
Citation
ACS NANO, v.13, no.8, pp.8766 - 8783
Abstract
Complex amyloid aggregation of amyloid-beta (1-40) (A beta(1-40)) in terms of monomer structures has not been fully understood. Herein, we report the microscopic mechanism and pathways of A beta(1-40) aggregation with macroscopic viewpoints through tuning its initial structure and solubility. Partial helical structures of A beta(1-40) induced by low solvent polarity accelerated cytotoxic A beta(1-40) amyloid fibrillation, while predominantly helical folds did not aggregate. Changes in the solvent polarity caused a rapid formation of beta-structure-rich protofibrils or oligomers via aggregation-prone helical structures. Modulation of the pH and salt concentration transformed oligomers to protofibrils, which proceeded to amyloid formation. We reveal diverse molecular mechanisms underlying A beta(1-40) aggregation with conceptual energy diagrams and propose that aggregation-prone partial helical structures are key to inducing amyloidogenesis. We demonstrate that context-dependent protein aggregation is comprehensively understood using the macroscopic phase diagram, which provides general insights into differentiation of amyloid formation and phase separation from unfolded and folded structures.
Publisher
AMER CHEMICAL SOC
ISSN
1936-0851
Keyword (Author)
Alzheimer&aposs diseaseamyloid betaamyloid fibrilprotein misfolding and aggregationaggregation pathwayhelical structurephase diagram
Keyword
FIBRIL FORMATIONHELICAL INTERMEDIATECIRCULAR-DICHROISMMUTATIONS ALTERPROTEINDISEASEMECHANISMSTATEOLIGOMERSALPHA-SYNUCLEIN

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