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A Helical Structural Nucleus Is the Primary Elongating Unit of Insulin Amyloid Fibrils

Although amyloid fibrillation is generally believed to be a nucleation-dependent process, the nuclei are largely structurally uncharacterized. This is in part due to the inherent experimental challenge associated with structural descriptions of individual components in a dynamic multi-component equi...

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Autores principales: Vestergaard, Bente, Groenning, Minna, Roessle, Manfred, Kastrup, Jette S, van de Weert, Marco, Flink, James M, Frokjaer, Sven, Gajhede, Michael, Svergun, Dmitri I
Formato: Texto
Lenguaje:English
Publicado: Public Library of Science 2007
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC1858711/
https://www.ncbi.nlm.nih.gov/pubmed/17472440
http://dx.doi.org/10.1371/journal.pbio.0050134
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author Vestergaard, Bente
Groenning, Minna
Roessle, Manfred
Kastrup, Jette S
van de Weert, Marco
Flink, James M
Frokjaer, Sven
Gajhede, Michael
Svergun, Dmitri I
author_facet Vestergaard, Bente
Groenning, Minna
Roessle, Manfred
Kastrup, Jette S
van de Weert, Marco
Flink, James M
Frokjaer, Sven
Gajhede, Michael
Svergun, Dmitri I
author_sort Vestergaard, Bente
collection PubMed
description Although amyloid fibrillation is generally believed to be a nucleation-dependent process, the nuclei are largely structurally uncharacterized. This is in part due to the inherent experimental challenge associated with structural descriptions of individual components in a dynamic multi-component equilibrium. There are indications that oligomeric aggregated precursors of fibrillation, and not mature fibrils, are the main cause of cytotoxicity in amyloid disease. This further emphasizes the importance of characterizing early fibrillation events. Here we present a kinetic x-ray solution scattering study of insulin fibrillation, revealing three major components: insulin monomers, mature fibrils, and an oligomeric species. Low-resolution three-dimensional structures are determined for the fibril repeating unit and for the oligomer, the latter being a helical unit composed of five to six insulin monomers. This helical oligomer is likely to be a structural nucleus, which accumulates above the supercritical concentration used in our experiments. The growth rate of the fibrils is proportional to the amount of the helical oligomer present in solution, suggesting that these oligomers elongate the fibrils. Hence, the structural nucleus and elongating unit in insulin amyloid fibrillation may be the same structural component above supercritical concentrations. A novel elongation pathway of insulin amyloid fibrils is proposed, based on the shape and size of the fibrillation precursor. The distinct helical oligomer described in this study defines a conceptually new basis of structure-based drug design against amyloid diseases.
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spelling pubmed-18587112007-05-12 A Helical Structural Nucleus Is the Primary Elongating Unit of Insulin Amyloid Fibrils Vestergaard, Bente Groenning, Minna Roessle, Manfred Kastrup, Jette S van de Weert, Marco Flink, James M Frokjaer, Sven Gajhede, Michael Svergun, Dmitri I PLoS Biol Research Article Although amyloid fibrillation is generally believed to be a nucleation-dependent process, the nuclei are largely structurally uncharacterized. This is in part due to the inherent experimental challenge associated with structural descriptions of individual components in a dynamic multi-component equilibrium. There are indications that oligomeric aggregated precursors of fibrillation, and not mature fibrils, are the main cause of cytotoxicity in amyloid disease. This further emphasizes the importance of characterizing early fibrillation events. Here we present a kinetic x-ray solution scattering study of insulin fibrillation, revealing three major components: insulin monomers, mature fibrils, and an oligomeric species. Low-resolution three-dimensional structures are determined for the fibril repeating unit and for the oligomer, the latter being a helical unit composed of five to six insulin monomers. This helical oligomer is likely to be a structural nucleus, which accumulates above the supercritical concentration used in our experiments. The growth rate of the fibrils is proportional to the amount of the helical oligomer present in solution, suggesting that these oligomers elongate the fibrils. Hence, the structural nucleus and elongating unit in insulin amyloid fibrillation may be the same structural component above supercritical concentrations. A novel elongation pathway of insulin amyloid fibrils is proposed, based on the shape and size of the fibrillation precursor. The distinct helical oligomer described in this study defines a conceptually new basis of structure-based drug design against amyloid diseases. Public Library of Science 2007-05 2007-05-01 /pmc/articles/PMC1858711/ /pubmed/17472440 http://dx.doi.org/10.1371/journal.pbio.0050134 Text en © 2007 Vestergaard 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
Vestergaard, Bente
Groenning, Minna
Roessle, Manfred
Kastrup, Jette S
van de Weert, Marco
Flink, James M
Frokjaer, Sven
Gajhede, Michael
Svergun, Dmitri I
A Helical Structural Nucleus Is the Primary Elongating Unit of Insulin Amyloid Fibrils
title A Helical Structural Nucleus Is the Primary Elongating Unit of Insulin Amyloid Fibrils
title_full A Helical Structural Nucleus Is the Primary Elongating Unit of Insulin Amyloid Fibrils
title_fullStr A Helical Structural Nucleus Is the Primary Elongating Unit of Insulin Amyloid Fibrils
title_full_unstemmed A Helical Structural Nucleus Is the Primary Elongating Unit of Insulin Amyloid Fibrils
title_short A Helical Structural Nucleus Is the Primary Elongating Unit of Insulin Amyloid Fibrils
title_sort helical structural nucleus is the primary elongating unit of insulin amyloid fibrils
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC1858711/
https://www.ncbi.nlm.nih.gov/pubmed/17472440
http://dx.doi.org/10.1371/journal.pbio.0050134
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