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Simple, Reliable Protocol for High-Yield Solubilization of Seedless Amyloid-β Monomer

[Image: see text] Self-assembly of the amyloid-β (Aβ) peptide to form toxic oligomers and fibrils is a key causal event in the onset of Alzheimer’s disease, and Aβ is the focus of intense research in neuroscience, biophysics, and structural biology aimed at therapeutic development. Due to its rapid...

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Autores principales: Taylor, Alexander I. P., Davis, Peter J., Aubrey, Liam D., White, Joshua B. R., Parton, Zoe N., Staniforth, Rosemary A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2022
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9817077/
https://www.ncbi.nlm.nih.gov/pubmed/36512740
http://dx.doi.org/10.1021/acschemneuro.2c00411
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author Taylor, Alexander I. P.
Davis, Peter J.
Aubrey, Liam D.
White, Joshua B. R.
Parton, Zoe N.
Staniforth, Rosemary A.
author_facet Taylor, Alexander I. P.
Davis, Peter J.
Aubrey, Liam D.
White, Joshua B. R.
Parton, Zoe N.
Staniforth, Rosemary A.
author_sort Taylor, Alexander I. P.
collection PubMed
description [Image: see text] Self-assembly of the amyloid-β (Aβ) peptide to form toxic oligomers and fibrils is a key causal event in the onset of Alzheimer’s disease, and Aβ is the focus of intense research in neuroscience, biophysics, and structural biology aimed at therapeutic development. Due to its rapid self-assembly and extreme sensitivity to aggregation conditions, preparation of seedless, reproducible Aβ solutions is highly challenging, and there are serious ongoing issues with consistency in the literature. In this paper, we use a liquid-phase separation technique, asymmetric flow field-flow fractionation with multiangle light scattering (AF4-MALS), to develop and validate a simple, effective, economical method for re-solubilization and quality control of purified, lyophilized Aβ samples. Our findings were obtained with recombinant peptide but are physicochemical in nature and thus highly relevant to synthetic peptide. We show that much of the variability in the literature stems from the inability of overly mild solvent treatments to produce consistently monomeric preparations and is rectified by a protocol involving high-pH (>12) dissolution, sonication, and rapid freezing to prevent modification. Aβ treated in this manner is chemically stable, can be stored over long timescales at −80 °C, and exhibits remarkably consistent self-assembly behavior when returned to near-neutral pH. These preparations are highly monomeric, seedless, and do not require additional rounds of size exclusion, eliminating the need for this costly procedure and increasing the flexibility of use. We propose that our improved protocol is the simplest, fastest, and most effective way to solubilize Aβ from diverse sources for sensitive self-assembly and toxicity assays.
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spelling pubmed-98170772023-01-07 Simple, Reliable Protocol for High-Yield Solubilization of Seedless Amyloid-β Monomer Taylor, Alexander I. P. Davis, Peter J. Aubrey, Liam D. White, Joshua B. R. Parton, Zoe N. Staniforth, Rosemary A. ACS Chem Neurosci [Image: see text] Self-assembly of the amyloid-β (Aβ) peptide to form toxic oligomers and fibrils is a key causal event in the onset of Alzheimer’s disease, and Aβ is the focus of intense research in neuroscience, biophysics, and structural biology aimed at therapeutic development. Due to its rapid self-assembly and extreme sensitivity to aggregation conditions, preparation of seedless, reproducible Aβ solutions is highly challenging, and there are serious ongoing issues with consistency in the literature. In this paper, we use a liquid-phase separation technique, asymmetric flow field-flow fractionation with multiangle light scattering (AF4-MALS), to develop and validate a simple, effective, economical method for re-solubilization and quality control of purified, lyophilized Aβ samples. Our findings were obtained with recombinant peptide but are physicochemical in nature and thus highly relevant to synthetic peptide. We show that much of the variability in the literature stems from the inability of overly mild solvent treatments to produce consistently monomeric preparations and is rectified by a protocol involving high-pH (>12) dissolution, sonication, and rapid freezing to prevent modification. Aβ treated in this manner is chemically stable, can be stored over long timescales at −80 °C, and exhibits remarkably consistent self-assembly behavior when returned to near-neutral pH. These preparations are highly monomeric, seedless, and do not require additional rounds of size exclusion, eliminating the need for this costly procedure and increasing the flexibility of use. We propose that our improved protocol is the simplest, fastest, and most effective way to solubilize Aβ from diverse sources for sensitive self-assembly and toxicity assays. American Chemical Society 2022-12-13 /pmc/articles/PMC9817077/ /pubmed/36512740 http://dx.doi.org/10.1021/acschemneuro.2c00411 Text en © 2022 The Authors. Published by American Chemical Society https://creativecommons.org/licenses/by/4.0/Permits the broadest form of re-use including for commercial purposes, provided that author attribution and integrity are maintained (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Taylor, Alexander I. P.
Davis, Peter J.
Aubrey, Liam D.
White, Joshua B. R.
Parton, Zoe N.
Staniforth, Rosemary A.
Simple, Reliable Protocol for High-Yield Solubilization of Seedless Amyloid-β Monomer
title Simple, Reliable Protocol for High-Yield Solubilization of Seedless Amyloid-β Monomer
title_full Simple, Reliable Protocol for High-Yield Solubilization of Seedless Amyloid-β Monomer
title_fullStr Simple, Reliable Protocol for High-Yield Solubilization of Seedless Amyloid-β Monomer
title_full_unstemmed Simple, Reliable Protocol for High-Yield Solubilization of Seedless Amyloid-β Monomer
title_short Simple, Reliable Protocol for High-Yield Solubilization of Seedless Amyloid-β Monomer
title_sort simple, reliable protocol for high-yield solubilization of seedless amyloid-β monomer
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9817077/
https://www.ncbi.nlm.nih.gov/pubmed/36512740
http://dx.doi.org/10.1021/acschemneuro.2c00411
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