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Fibrillization of 40-residue β-Amyloid Peptides in Membrane-Like Environments Leads to Different Fibril Structures and Reduced Molecular Polymorphisms

The molecular-level polymorphism in β-Amyloid (Aβ) fibrils have recently been considered as a pathologically relevant factor in Alzheimer’s disease (AD). Studies showed that the structural deviations in human-brain-seeded Aβ fibrils potentially correlated with the clinical histories of AD patients....

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Autores principales: Cheng, Qinghui, Hu, Zhi-Wen, Tobin-Miyaji, Yuto, Perkins, Amy E., Deak, Terrence, Qiang, Wei
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7356566/
https://www.ncbi.nlm.nih.gov/pubmed/32521743
http://dx.doi.org/10.3390/biom10060881
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author Cheng, Qinghui
Hu, Zhi-Wen
Tobin-Miyaji, Yuto
Perkins, Amy E.
Deak, Terrence
Qiang, Wei
author_facet Cheng, Qinghui
Hu, Zhi-Wen
Tobin-Miyaji, Yuto
Perkins, Amy E.
Deak, Terrence
Qiang, Wei
author_sort Cheng, Qinghui
collection PubMed
description The molecular-level polymorphism in β-Amyloid (Aβ) fibrils have recently been considered as a pathologically relevant factor in Alzheimer’s disease (AD). Studies showed that the structural deviations in human-brain-seeded Aβ fibrils potentially correlated with the clinical histories of AD patients. For the 40-residue Aβ (Aβ(40)) fibrils derived from human brain tissues, a predominant molecular structure was proposed based on solid-state nuclear magnetic resonance (ssNMR) spectroscopy. However, previous studies have shown that the molecular structures of Aβ(40) fibrils were sensitive to their growth conditions in aqueous environments. We show in this work that biological membranes and their phospholipid bilayer mimics serve as environmental factors to reduce the structural heterogeneity in Aβ(40) fibrils. Fibrillization in the presence of membranes leads to fibril structures that are significantly different to the Aβ(40) fibrils grown in aqueous solutions. Fibrils grown from multiple types of membranes, including the biological membranes extracted from the rats’ synaptosomes, shared similar ssNMR spectral features. Our studies emphasize the biological relevance of membranes in Aβ(40) fibril structures and fibrillization processes.
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spelling pubmed-73565662020-07-30 Fibrillization of 40-residue β-Amyloid Peptides in Membrane-Like Environments Leads to Different Fibril Structures and Reduced Molecular Polymorphisms Cheng, Qinghui Hu, Zhi-Wen Tobin-Miyaji, Yuto Perkins, Amy E. Deak, Terrence Qiang, Wei Biomolecules Article The molecular-level polymorphism in β-Amyloid (Aβ) fibrils have recently been considered as a pathologically relevant factor in Alzheimer’s disease (AD). Studies showed that the structural deviations in human-brain-seeded Aβ fibrils potentially correlated with the clinical histories of AD patients. For the 40-residue Aβ (Aβ(40)) fibrils derived from human brain tissues, a predominant molecular structure was proposed based on solid-state nuclear magnetic resonance (ssNMR) spectroscopy. However, previous studies have shown that the molecular structures of Aβ(40) fibrils were sensitive to their growth conditions in aqueous environments. We show in this work that biological membranes and their phospholipid bilayer mimics serve as environmental factors to reduce the structural heterogeneity in Aβ(40) fibrils. Fibrillization in the presence of membranes leads to fibril structures that are significantly different to the Aβ(40) fibrils grown in aqueous solutions. Fibrils grown from multiple types of membranes, including the biological membranes extracted from the rats’ synaptosomes, shared similar ssNMR spectral features. Our studies emphasize the biological relevance of membranes in Aβ(40) fibril structures and fibrillization processes. MDPI 2020-06-08 /pmc/articles/PMC7356566/ /pubmed/32521743 http://dx.doi.org/10.3390/biom10060881 Text en © 2020 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Cheng, Qinghui
Hu, Zhi-Wen
Tobin-Miyaji, Yuto
Perkins, Amy E.
Deak, Terrence
Qiang, Wei
Fibrillization of 40-residue β-Amyloid Peptides in Membrane-Like Environments Leads to Different Fibril Structures and Reduced Molecular Polymorphisms
title Fibrillization of 40-residue β-Amyloid Peptides in Membrane-Like Environments Leads to Different Fibril Structures and Reduced Molecular Polymorphisms
title_full Fibrillization of 40-residue β-Amyloid Peptides in Membrane-Like Environments Leads to Different Fibril Structures and Reduced Molecular Polymorphisms
title_fullStr Fibrillization of 40-residue β-Amyloid Peptides in Membrane-Like Environments Leads to Different Fibril Structures and Reduced Molecular Polymorphisms
title_full_unstemmed Fibrillization of 40-residue β-Amyloid Peptides in Membrane-Like Environments Leads to Different Fibril Structures and Reduced Molecular Polymorphisms
title_short Fibrillization of 40-residue β-Amyloid Peptides in Membrane-Like Environments Leads to Different Fibril Structures and Reduced Molecular Polymorphisms
title_sort fibrillization of 40-residue β-amyloid peptides in membrane-like environments leads to different fibril structures and reduced molecular polymorphisms
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7356566/
https://www.ncbi.nlm.nih.gov/pubmed/32521743
http://dx.doi.org/10.3390/biom10060881
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