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Transthyretin Inhibits Primary and Secondary Nucleations of Amyloid-β Peptide Aggregation and Reduces the Toxicity of Its Oligomers

[Image: see text] Alzheimer’s disease is associated with the deposition of the amyloid-β peptide (Aβ) into extracellular senile plaques in the brain. In vitro and in vivo observations have indicated that transthyretin (TTR) acts as an Aβ scavenger in the brain, but the mechanism has not been fully r...

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Autores principales: Ghadami, Seyyed Abolghasem, Chia, Sean, Ruggeri, Francesco Simone, Meisl, Georg, Bemporad, Francesco, Habchi, Johnny, Cascella, Roberta, Dobson, Christopher M., Vendruscolo, Michele, Knowles, Tuomas P. J., Chiti, Fabrizio
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2020
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7997117/
https://www.ncbi.nlm.nih.gov/pubmed/32011129
http://dx.doi.org/10.1021/acs.biomac.9b01475
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author Ghadami, Seyyed Abolghasem
Chia, Sean
Ruggeri, Francesco Simone
Meisl, Georg
Bemporad, Francesco
Habchi, Johnny
Cascella, Roberta
Dobson, Christopher M.
Vendruscolo, Michele
Knowles, Tuomas P. J.
Chiti, Fabrizio
author_facet Ghadami, Seyyed Abolghasem
Chia, Sean
Ruggeri, Francesco Simone
Meisl, Georg
Bemporad, Francesco
Habchi, Johnny
Cascella, Roberta
Dobson, Christopher M.
Vendruscolo, Michele
Knowles, Tuomas P. J.
Chiti, Fabrizio
author_sort Ghadami, Seyyed Abolghasem
collection PubMed
description [Image: see text] Alzheimer’s disease is associated with the deposition of the amyloid-β peptide (Aβ) into extracellular senile plaques in the brain. In vitro and in vivo observations have indicated that transthyretin (TTR) acts as an Aβ scavenger in the brain, but the mechanism has not been fully resolved. We have monitored the aggregation process of Aβ(40) by thioflavin T fluorescence, in the presence or absence of different concentrations of preformed seed aggregates of Aβ(40), of wild-type tetrameric TTR (WT-TTR), and of a variant engineered to be stable as a monomer (M-TTR). Both WT-TTR and M-TTR were found to inhibit specific steps of the process of Aβ(40) fibril formation, which are primary and secondary nucleations, without affecting the elongation of the resulting fibrils. Moreover, the analysis shows that both WT-TTR and M-TTR bind to Aβ(40) oligomers formed in the aggregation reaction and inhibit their conversion into the shortest fibrils able to elongate. Using biophysical methods, TTR was found to change some aspects of its overall structure following such interactions with Aβ(40) oligomers, as well as with oligomers of Aβ(42), while maintaining its overall topology. Hence, it is likely that the predominant mechanism by which TTR exerts its protective role lies in the binding of TTR to the Aβ oligomers and in inhibiting primary and secondary nucleation processes, which limits both the toxicity of Aβ oligomers and the ability of the fibrils to proliferate.
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spelling pubmed-79971172021-03-29 Transthyretin Inhibits Primary and Secondary Nucleations of Amyloid-β Peptide Aggregation and Reduces the Toxicity of Its Oligomers Ghadami, Seyyed Abolghasem Chia, Sean Ruggeri, Francesco Simone Meisl, Georg Bemporad, Francesco Habchi, Johnny Cascella, Roberta Dobson, Christopher M. Vendruscolo, Michele Knowles, Tuomas P. J. Chiti, Fabrizio Biomacromolecules [Image: see text] Alzheimer’s disease is associated with the deposition of the amyloid-β peptide (Aβ) into extracellular senile plaques in the brain. In vitro and in vivo observations have indicated that transthyretin (TTR) acts as an Aβ scavenger in the brain, but the mechanism has not been fully resolved. We have monitored the aggregation process of Aβ(40) by thioflavin T fluorescence, in the presence or absence of different concentrations of preformed seed aggregates of Aβ(40), of wild-type tetrameric TTR (WT-TTR), and of a variant engineered to be stable as a monomer (M-TTR). Both WT-TTR and M-TTR were found to inhibit specific steps of the process of Aβ(40) fibril formation, which are primary and secondary nucleations, without affecting the elongation of the resulting fibrils. Moreover, the analysis shows that both WT-TTR and M-TTR bind to Aβ(40) oligomers formed in the aggregation reaction and inhibit their conversion into the shortest fibrils able to elongate. Using biophysical methods, TTR was found to change some aspects of its overall structure following such interactions with Aβ(40) oligomers, as well as with oligomers of Aβ(42), while maintaining its overall topology. Hence, it is likely that the predominant mechanism by which TTR exerts its protective role lies in the binding of TTR to the Aβ oligomers and in inhibiting primary and secondary nucleation processes, which limits both the toxicity of Aβ oligomers and the ability of the fibrils to proliferate. American Chemical Society 2020-02-03 2020-03-09 /pmc/articles/PMC7997117/ /pubmed/32011129 http://dx.doi.org/10.1021/acs.biomac.9b01475 Text en 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 Ghadami, Seyyed Abolghasem
Chia, Sean
Ruggeri, Francesco Simone
Meisl, Georg
Bemporad, Francesco
Habchi, Johnny
Cascella, Roberta
Dobson, Christopher M.
Vendruscolo, Michele
Knowles, Tuomas P. J.
Chiti, Fabrizio
Transthyretin Inhibits Primary and Secondary Nucleations of Amyloid-β Peptide Aggregation and Reduces the Toxicity of Its Oligomers
title Transthyretin Inhibits Primary and Secondary Nucleations of Amyloid-β Peptide Aggregation and Reduces the Toxicity of Its Oligomers
title_full Transthyretin Inhibits Primary and Secondary Nucleations of Amyloid-β Peptide Aggregation and Reduces the Toxicity of Its Oligomers
title_fullStr Transthyretin Inhibits Primary and Secondary Nucleations of Amyloid-β Peptide Aggregation and Reduces the Toxicity of Its Oligomers
title_full_unstemmed Transthyretin Inhibits Primary and Secondary Nucleations of Amyloid-β Peptide Aggregation and Reduces the Toxicity of Its Oligomers
title_short Transthyretin Inhibits Primary and Secondary Nucleations of Amyloid-β Peptide Aggregation and Reduces the Toxicity of Its Oligomers
title_sort transthyretin inhibits primary and secondary nucleations of amyloid-β peptide aggregation and reduces the toxicity of its oligomers
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7997117/
https://www.ncbi.nlm.nih.gov/pubmed/32011129
http://dx.doi.org/10.1021/acs.biomac.9b01475
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