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Aggregation of Aß(25-35) on DOPC and DOPC/DHA Bilayers: An Atomic Force Microscopy Study

β amyloid peptide plays an important role in both the manifestation and progression of Alzheimer disease. It has a tendency to aggregate, forming low-molecular weight soluble oligomers, higher-molecular weight protofibrillar oligomers and insoluble fibrils. The relative importance of these single ol...

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Autores principales: Sublimi Saponetti, Matilde, Grimaldi, Manuela, Scrima, Mario, Albonetti, Cristiano, Nori, Stefania Lucia, Cucolo, Annamaria, Bobba, Fabrizio, D'Ursi, Anna Maria
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4281140/
https://www.ncbi.nlm.nih.gov/pubmed/25551704
http://dx.doi.org/10.1371/journal.pone.0115780
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author Sublimi Saponetti, Matilde
Grimaldi, Manuela
Scrima, Mario
Albonetti, Cristiano
Nori, Stefania Lucia
Cucolo, Annamaria
Bobba, Fabrizio
D'Ursi, Anna Maria
author_facet Sublimi Saponetti, Matilde
Grimaldi, Manuela
Scrima, Mario
Albonetti, Cristiano
Nori, Stefania Lucia
Cucolo, Annamaria
Bobba, Fabrizio
D'Ursi, Anna Maria
author_sort Sublimi Saponetti, Matilde
collection PubMed
description β amyloid peptide plays an important role in both the manifestation and progression of Alzheimer disease. It has a tendency to aggregate, forming low-molecular weight soluble oligomers, higher-molecular weight protofibrillar oligomers and insoluble fibrils. The relative importance of these single oligomeric-polymeric species, in relation to the morbidity of the disease, is currently being debated. Here we present an Atomic Force Microscopy (AFM) study of Aβ(25–35) aggregation on hydrophobic dioleoylphosphatidylcholine (DOPC) and DOPC/docosahexaenoic 22∶6 acid (DHA) lipid bilayers. Aβ(25–35) is the smallest fragment retaining the biological activity of the full-length peptide, whereas DOPC and DOPC/DHA lipid bilayers were selected as models of cell-membrane environments characterized by different fluidity. Our results provide evidence that in hydrophobic DOPC and DOPC/DHA lipid bilayers, Aβ(25-35) forms layered aggregates composed of mainly annular structures. The mutual interaction between annular structures and lipid surfaces end-results into a membrane solubilization. The presence of DHA as a membrane-fluidizing agent is essential to protect the membrane from damage caused by interactions with peptide aggregates; to reduces the bilayer defects where the delipidation process starts.
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spelling pubmed-42811402015-01-07 Aggregation of Aß(25-35) on DOPC and DOPC/DHA Bilayers: An Atomic Force Microscopy Study Sublimi Saponetti, Matilde Grimaldi, Manuela Scrima, Mario Albonetti, Cristiano Nori, Stefania Lucia Cucolo, Annamaria Bobba, Fabrizio D'Ursi, Anna Maria PLoS One Research Article β amyloid peptide plays an important role in both the manifestation and progression of Alzheimer disease. It has a tendency to aggregate, forming low-molecular weight soluble oligomers, higher-molecular weight protofibrillar oligomers and insoluble fibrils. The relative importance of these single oligomeric-polymeric species, in relation to the morbidity of the disease, is currently being debated. Here we present an Atomic Force Microscopy (AFM) study of Aβ(25–35) aggregation on hydrophobic dioleoylphosphatidylcholine (DOPC) and DOPC/docosahexaenoic 22∶6 acid (DHA) lipid bilayers. Aβ(25–35) is the smallest fragment retaining the biological activity of the full-length peptide, whereas DOPC and DOPC/DHA lipid bilayers were selected as models of cell-membrane environments characterized by different fluidity. Our results provide evidence that in hydrophobic DOPC and DOPC/DHA lipid bilayers, Aβ(25-35) forms layered aggregates composed of mainly annular structures. The mutual interaction between annular structures and lipid surfaces end-results into a membrane solubilization. The presence of DHA as a membrane-fluidizing agent is essential to protect the membrane from damage caused by interactions with peptide aggregates; to reduces the bilayer defects where the delipidation process starts. Public Library of Science 2014-12-31 /pmc/articles/PMC4281140/ /pubmed/25551704 http://dx.doi.org/10.1371/journal.pone.0115780 Text en © 2014 Sublimi Saponetti 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
Sublimi Saponetti, Matilde
Grimaldi, Manuela
Scrima, Mario
Albonetti, Cristiano
Nori, Stefania Lucia
Cucolo, Annamaria
Bobba, Fabrizio
D'Ursi, Anna Maria
Aggregation of Aß(25-35) on DOPC and DOPC/DHA Bilayers: An Atomic Force Microscopy Study
title Aggregation of Aß(25-35) on DOPC and DOPC/DHA Bilayers: An Atomic Force Microscopy Study
title_full Aggregation of Aß(25-35) on DOPC and DOPC/DHA Bilayers: An Atomic Force Microscopy Study
title_fullStr Aggregation of Aß(25-35) on DOPC and DOPC/DHA Bilayers: An Atomic Force Microscopy Study
title_full_unstemmed Aggregation of Aß(25-35) on DOPC and DOPC/DHA Bilayers: An Atomic Force Microscopy Study
title_short Aggregation of Aß(25-35) on DOPC and DOPC/DHA Bilayers: An Atomic Force Microscopy Study
title_sort aggregation of aß(25-35) on dopc and dopc/dha bilayers: an atomic force microscopy study
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4281140/
https://www.ncbi.nlm.nih.gov/pubmed/25551704
http://dx.doi.org/10.1371/journal.pone.0115780
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