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Effects of Secondary Metabolite Extract from Phomopsis occulta on β-Amyloid Aggregation

Inhibition of β-amyloid (Aβ) aggregation is an attractive therapeutic and preventive strategy for the discovery of disease-modifying agents in Alzheimer's disease (AD). Phomopsis occulta is a new, salt-tolerant fungus isolated from mangrove Pongamia pinnata (L.) Pierre. We report here the inhib...

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Autores principales: Wu, Haiqiang, Zhang, Fang, Williamson, Neil, Jian, Jie, Zhang, Liao, Liang, Zeqiu, Wang, Jinyu, An, Linkun, Tunnacliffe, Alan, Zheng, Yizhi
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4183696/
https://www.ncbi.nlm.nih.gov/pubmed/25275648
http://dx.doi.org/10.1371/journal.pone.0109438
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author Wu, Haiqiang
Zhang, Fang
Williamson, Neil
Jian, Jie
Zhang, Liao
Liang, Zeqiu
Wang, Jinyu
An, Linkun
Tunnacliffe, Alan
Zheng, Yizhi
author_facet Wu, Haiqiang
Zhang, Fang
Williamson, Neil
Jian, Jie
Zhang, Liao
Liang, Zeqiu
Wang, Jinyu
An, Linkun
Tunnacliffe, Alan
Zheng, Yizhi
author_sort Wu, Haiqiang
collection PubMed
description Inhibition of β-amyloid (Aβ) aggregation is an attractive therapeutic and preventive strategy for the discovery of disease-modifying agents in Alzheimer's disease (AD). Phomopsis occulta is a new, salt-tolerant fungus isolated from mangrove Pongamia pinnata (L.) Pierre. We report here the inhibitory effects of secondary metabolites from Ph. occulta on the aggregation of Aβ42. It was found that mycelia extracts (MEs) from Ph. occulta cultured with 0, 2, and 3 M NaCl exhibited inhibitory activity in an E. coli model of Aβ aggregation. A water-soluble fraction, ME0-W-F1, composed of mainly small peptides, was able to reduce aggregation of an Aβ42-EGFP fusion protein and an early onset familial mutation Aβ42E22G-mCherry fusion protein in transfected HEK293 cells. ME0-W-F1 also antagonized the cytotoxicity of Aβ42 in the neural cell line SH-SY5Y in dose-dependent manner. Moreover, SDS-PAGE and FT-IR analysis confirmed an inhibitory effect of ME0-W-F1 on the aggregation of Aβ42 in vitro. ME0-W-F1 blocked the conformational transition of Aβ42 from α-helix/random coil to β-sheet, and thereby inhibited formation of Aβ42 tetramers and high molecular weight oligomers. ME0-W-F1 and other water-soluble secondary metabolites from Ph. occulta therefore represent new candidate natural products against aggregation of Aβ42, and illustrate the potential of salt tolerant fungi from mangrove as resources for the treatment of AD and other diseases.
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spelling pubmed-41836962014-10-07 Effects of Secondary Metabolite Extract from Phomopsis occulta on β-Amyloid Aggregation Wu, Haiqiang Zhang, Fang Williamson, Neil Jian, Jie Zhang, Liao Liang, Zeqiu Wang, Jinyu An, Linkun Tunnacliffe, Alan Zheng, Yizhi PLoS One Research Article Inhibition of β-amyloid (Aβ) aggregation is an attractive therapeutic and preventive strategy for the discovery of disease-modifying agents in Alzheimer's disease (AD). Phomopsis occulta is a new, salt-tolerant fungus isolated from mangrove Pongamia pinnata (L.) Pierre. We report here the inhibitory effects of secondary metabolites from Ph. occulta on the aggregation of Aβ42. It was found that mycelia extracts (MEs) from Ph. occulta cultured with 0, 2, and 3 M NaCl exhibited inhibitory activity in an E. coli model of Aβ aggregation. A water-soluble fraction, ME0-W-F1, composed of mainly small peptides, was able to reduce aggregation of an Aβ42-EGFP fusion protein and an early onset familial mutation Aβ42E22G-mCherry fusion protein in transfected HEK293 cells. ME0-W-F1 also antagonized the cytotoxicity of Aβ42 in the neural cell line SH-SY5Y in dose-dependent manner. Moreover, SDS-PAGE and FT-IR analysis confirmed an inhibitory effect of ME0-W-F1 on the aggregation of Aβ42 in vitro. ME0-W-F1 blocked the conformational transition of Aβ42 from α-helix/random coil to β-sheet, and thereby inhibited formation of Aβ42 tetramers and high molecular weight oligomers. ME0-W-F1 and other water-soluble secondary metabolites from Ph. occulta therefore represent new candidate natural products against aggregation of Aβ42, and illustrate the potential of salt tolerant fungi from mangrove as resources for the treatment of AD and other diseases. Public Library of Science 2014-10-02 /pmc/articles/PMC4183696/ /pubmed/25275648 http://dx.doi.org/10.1371/journal.pone.0109438 Text en © 2014 Wu et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Wu, Haiqiang
Zhang, Fang
Williamson, Neil
Jian, Jie
Zhang, Liao
Liang, Zeqiu
Wang, Jinyu
An, Linkun
Tunnacliffe, Alan
Zheng, Yizhi
Effects of Secondary Metabolite Extract from Phomopsis occulta on β-Amyloid Aggregation
title Effects of Secondary Metabolite Extract from Phomopsis occulta on β-Amyloid Aggregation
title_full Effects of Secondary Metabolite Extract from Phomopsis occulta on β-Amyloid Aggregation
title_fullStr Effects of Secondary Metabolite Extract from Phomopsis occulta on β-Amyloid Aggregation
title_full_unstemmed Effects of Secondary Metabolite Extract from Phomopsis occulta on β-Amyloid Aggregation
title_short Effects of Secondary Metabolite Extract from Phomopsis occulta on β-Amyloid Aggregation
title_sort effects of secondary metabolite extract from phomopsis occulta on β-amyloid aggregation
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4183696/
https://www.ncbi.nlm.nih.gov/pubmed/25275648
http://dx.doi.org/10.1371/journal.pone.0109438
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