Cargando…

A Multiscale Approach to Characterize the Early Aggregation Steps of the Amyloid-Forming Peptide GNNQQNY from the Yeast Prion Sup-35

The self-organization of peptides into amyloidogenic oligomers is one of the key events for a wide range of molecular and degenerative diseases. Atomic-resolution characterization of the mechanisms responsible for the aggregation process and the resulting structures is thus a necessary step to impro...

Descripción completa

Detalles Bibliográficos
Autores principales: Nasica-Labouze, Jessica, Meli, Massimiliano, Derreumaux, Philippe, Colombo, Giorgio, Mousseau, Normand
Formato: Texto
Lenguaje:English
Publicado: Public Library of Science 2011
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3098217/
https://www.ncbi.nlm.nih.gov/pubmed/21625573
http://dx.doi.org/10.1371/journal.pcbi.1002051
_version_ 1782203938623193088
author Nasica-Labouze, Jessica
Meli, Massimiliano
Derreumaux, Philippe
Colombo, Giorgio
Mousseau, Normand
author_facet Nasica-Labouze, Jessica
Meli, Massimiliano
Derreumaux, Philippe
Colombo, Giorgio
Mousseau, Normand
author_sort Nasica-Labouze, Jessica
collection PubMed
description The self-organization of peptides into amyloidogenic oligomers is one of the key events for a wide range of molecular and degenerative diseases. Atomic-resolution characterization of the mechanisms responsible for the aggregation process and the resulting structures is thus a necessary step to improve our understanding of the determinants of these pathologies. To address this issue, we combine the accelerated sampling properties of replica exchange molecular dynamics simulations based on the OPEP coarse-grained potential with the atomic resolution description of interactions provided by all-atom MD simulations, and investigate the oligomerization process of the GNNQQNY for three system sizes: 3-mers, 12-mers and 20-mers. Results for our integrated simulations show a rich variety of structural arrangements for aggregates of all sizes. Elongated fibril-like structures can form transiently in the 20-mer case, but they are not stable and easily interconvert in more globular and disordered forms. Our extensive characterization of the intermediate structures and their physico-chemical determinants points to a high degree of polymorphism for the GNNQQNY sequence that can be reflected at the macroscopic scale. Detailed mechanisms and structures that underlie amyloid aggregation are also provided.
format Text
id pubmed-3098217
institution National Center for Biotechnology Information
language English
publishDate 2011
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-30982172011-05-27 A Multiscale Approach to Characterize the Early Aggregation Steps of the Amyloid-Forming Peptide GNNQQNY from the Yeast Prion Sup-35 Nasica-Labouze, Jessica Meli, Massimiliano Derreumaux, Philippe Colombo, Giorgio Mousseau, Normand PLoS Comput Biol Research Article The self-organization of peptides into amyloidogenic oligomers is one of the key events for a wide range of molecular and degenerative diseases. Atomic-resolution characterization of the mechanisms responsible for the aggregation process and the resulting structures is thus a necessary step to improve our understanding of the determinants of these pathologies. To address this issue, we combine the accelerated sampling properties of replica exchange molecular dynamics simulations based on the OPEP coarse-grained potential with the atomic resolution description of interactions provided by all-atom MD simulations, and investigate the oligomerization process of the GNNQQNY for three system sizes: 3-mers, 12-mers and 20-mers. Results for our integrated simulations show a rich variety of structural arrangements for aggregates of all sizes. Elongated fibril-like structures can form transiently in the 20-mer case, but they are not stable and easily interconvert in more globular and disordered forms. Our extensive characterization of the intermediate structures and their physico-chemical determinants points to a high degree of polymorphism for the GNNQQNY sequence that can be reflected at the macroscopic scale. Detailed mechanisms and structures that underlie amyloid aggregation are also provided. Public Library of Science 2011-05-19 /pmc/articles/PMC3098217/ /pubmed/21625573 http://dx.doi.org/10.1371/journal.pcbi.1002051 Text en Nasica-Labouze 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
Nasica-Labouze, Jessica
Meli, Massimiliano
Derreumaux, Philippe
Colombo, Giorgio
Mousseau, Normand
A Multiscale Approach to Characterize the Early Aggregation Steps of the Amyloid-Forming Peptide GNNQQNY from the Yeast Prion Sup-35
title A Multiscale Approach to Characterize the Early Aggregation Steps of the Amyloid-Forming Peptide GNNQQNY from the Yeast Prion Sup-35
title_full A Multiscale Approach to Characterize the Early Aggregation Steps of the Amyloid-Forming Peptide GNNQQNY from the Yeast Prion Sup-35
title_fullStr A Multiscale Approach to Characterize the Early Aggregation Steps of the Amyloid-Forming Peptide GNNQQNY from the Yeast Prion Sup-35
title_full_unstemmed A Multiscale Approach to Characterize the Early Aggregation Steps of the Amyloid-Forming Peptide GNNQQNY from the Yeast Prion Sup-35
title_short A Multiscale Approach to Characterize the Early Aggregation Steps of the Amyloid-Forming Peptide GNNQQNY from the Yeast Prion Sup-35
title_sort multiscale approach to characterize the early aggregation steps of the amyloid-forming peptide gnnqqny from the yeast prion sup-35
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3098217/
https://www.ncbi.nlm.nih.gov/pubmed/21625573
http://dx.doi.org/10.1371/journal.pcbi.1002051
work_keys_str_mv AT nasicalabouzejessica amultiscaleapproachtocharacterizetheearlyaggregationstepsoftheamyloidformingpeptidegnnqqnyfromtheyeastprionsup35
AT melimassimiliano amultiscaleapproachtocharacterizetheearlyaggregationstepsoftheamyloidformingpeptidegnnqqnyfromtheyeastprionsup35
AT derreumauxphilippe amultiscaleapproachtocharacterizetheearlyaggregationstepsoftheamyloidformingpeptidegnnqqnyfromtheyeastprionsup35
AT colombogiorgio amultiscaleapproachtocharacterizetheearlyaggregationstepsoftheamyloidformingpeptidegnnqqnyfromtheyeastprionsup35
AT mousseaunormand amultiscaleapproachtocharacterizetheearlyaggregationstepsoftheamyloidformingpeptidegnnqqnyfromtheyeastprionsup35
AT nasicalabouzejessica multiscaleapproachtocharacterizetheearlyaggregationstepsoftheamyloidformingpeptidegnnqqnyfromtheyeastprionsup35
AT melimassimiliano multiscaleapproachtocharacterizetheearlyaggregationstepsoftheamyloidformingpeptidegnnqqnyfromtheyeastprionsup35
AT derreumauxphilippe multiscaleapproachtocharacterizetheearlyaggregationstepsoftheamyloidformingpeptidegnnqqnyfromtheyeastprionsup35
AT colombogiorgio multiscaleapproachtocharacterizetheearlyaggregationstepsoftheamyloidformingpeptidegnnqqnyfromtheyeastprionsup35
AT mousseaunormand multiscaleapproachtocharacterizetheearlyaggregationstepsoftheamyloidformingpeptidegnnqqnyfromtheyeastprionsup35