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Quaternary Structure Heterogeneity of Oligomeric Proteins: A SAXS and SANS Study of the Dissociation Products of Octopus vulgaris Hemocyanin

Octopus vulgaris hemocyanin shows a particular self-assembling pattern, characterized by a hierarchical organization of monomers. The highest molecular weight aggregate is a decamer, the stability of which in solution depends on several parameters. Different pH values, buffer compositions, H(2)O/D(2...

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Autores principales: Spinozzi, Francesco, Mariani, Paolo, Mičetić, Ivan, Ferrero, Claudio, Pontoni, Diego, Beltramini, Mariano
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3499515/
https://www.ncbi.nlm.nih.gov/pubmed/23166737
http://dx.doi.org/10.1371/journal.pone.0049644
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author Spinozzi, Francesco
Mariani, Paolo
Mičetić, Ivan
Ferrero, Claudio
Pontoni, Diego
Beltramini, Mariano
author_facet Spinozzi, Francesco
Mariani, Paolo
Mičetić, Ivan
Ferrero, Claudio
Pontoni, Diego
Beltramini, Mariano
author_sort Spinozzi, Francesco
collection PubMed
description Octopus vulgaris hemocyanin shows a particular self-assembling pattern, characterized by a hierarchical organization of monomers. The highest molecular weight aggregate is a decamer, the stability of which in solution depends on several parameters. Different pH values, buffer compositions, H(2)O/D(2)O ratios and Hofmeister’s salts result in modifications of the aggregation state of Octopus vulgaris hemocyanin. The new QUAFIT method, recently applied to derive the structure of the decameric and the monomeric assembly from small-angle scattering data, is used here to model the polydisperse system that results from changing the solution conditions. A dataset of small-angle X-rays and neutron scattering curves is analysed by QUAFIT to derive structure, composition and concentration of different assemblies present in solution. According to the hierarchy of the association/dissociation processes and the possible number of different aggregation products in solution, each sample has been considered as a heterogeneous mixture composed of the entire decamer, the dissociated “loose” monomer and all the intermediate dissociation products. Scattering curves corresponding to given experimental conditions are well fitted by using a linear combination of single particle form factors. QUAFIT has proved to be a method of general validity to describe solutions of proteins that, even after purification processes, result to be intrinsically heterogeneous.
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spelling pubmed-34995152012-11-19 Quaternary Structure Heterogeneity of Oligomeric Proteins: A SAXS and SANS Study of the Dissociation Products of Octopus vulgaris Hemocyanin Spinozzi, Francesco Mariani, Paolo Mičetić, Ivan Ferrero, Claudio Pontoni, Diego Beltramini, Mariano PLoS One Research Article Octopus vulgaris hemocyanin shows a particular self-assembling pattern, characterized by a hierarchical organization of monomers. The highest molecular weight aggregate is a decamer, the stability of which in solution depends on several parameters. Different pH values, buffer compositions, H(2)O/D(2)O ratios and Hofmeister’s salts result in modifications of the aggregation state of Octopus vulgaris hemocyanin. The new QUAFIT method, recently applied to derive the structure of the decameric and the monomeric assembly from small-angle scattering data, is used here to model the polydisperse system that results from changing the solution conditions. A dataset of small-angle X-rays and neutron scattering curves is analysed by QUAFIT to derive structure, composition and concentration of different assemblies present in solution. According to the hierarchy of the association/dissociation processes and the possible number of different aggregation products in solution, each sample has been considered as a heterogeneous mixture composed of the entire decamer, the dissociated “loose” monomer and all the intermediate dissociation products. Scattering curves corresponding to given experimental conditions are well fitted by using a linear combination of single particle form factors. QUAFIT has proved to be a method of general validity to describe solutions of proteins that, even after purification processes, result to be intrinsically heterogeneous. Public Library of Science 2012-11-15 /pmc/articles/PMC3499515/ /pubmed/23166737 http://dx.doi.org/10.1371/journal.pone.0049644 Text en © 2012 Spinozzi 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
Spinozzi, Francesco
Mariani, Paolo
Mičetić, Ivan
Ferrero, Claudio
Pontoni, Diego
Beltramini, Mariano
Quaternary Structure Heterogeneity of Oligomeric Proteins: A SAXS and SANS Study of the Dissociation Products of Octopus vulgaris Hemocyanin
title Quaternary Structure Heterogeneity of Oligomeric Proteins: A SAXS and SANS Study of the Dissociation Products of Octopus vulgaris Hemocyanin
title_full Quaternary Structure Heterogeneity of Oligomeric Proteins: A SAXS and SANS Study of the Dissociation Products of Octopus vulgaris Hemocyanin
title_fullStr Quaternary Structure Heterogeneity of Oligomeric Proteins: A SAXS and SANS Study of the Dissociation Products of Octopus vulgaris Hemocyanin
title_full_unstemmed Quaternary Structure Heterogeneity of Oligomeric Proteins: A SAXS and SANS Study of the Dissociation Products of Octopus vulgaris Hemocyanin
title_short Quaternary Structure Heterogeneity of Oligomeric Proteins: A SAXS and SANS Study of the Dissociation Products of Octopus vulgaris Hemocyanin
title_sort quaternary structure heterogeneity of oligomeric proteins: a saxs and sans study of the dissociation products of octopus vulgaris hemocyanin
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3499515/
https://www.ncbi.nlm.nih.gov/pubmed/23166737
http://dx.doi.org/10.1371/journal.pone.0049644
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