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A Major Role for Side-Chain Polyglutamine Hydrogen Bonding in Irreversible Ataxin-3 Aggregation

The protein ataxin-3 consists of an N-terminal globular Josephin domain (JD) and an unstructured C-terminal region containing a stretch of consecutive glutamines that triggers the neurodegenerative disorder spinocerebellar ataxia type 3, when it is expanded beyond a critical threshold. The disease r...

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Autores principales: Natalello, Antonino, Frana, Anna Maria, Relini, Annalisa, Apicella, Alessandra, Invernizzi, Gaetano, Casari, Carlo, Gliozzi, Alessandra, Doglia, Silvia Maria, Tortora, Paolo, Regonesi, Maria Elena
Formato: Texto
Lenguaje:English
Publicado: Public Library of Science 2011
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3076451/
https://www.ncbi.nlm.nih.gov/pubmed/21533208
http://dx.doi.org/10.1371/journal.pone.0018789
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author Natalello, Antonino
Frana, Anna Maria
Relini, Annalisa
Apicella, Alessandra
Invernizzi, Gaetano
Casari, Carlo
Gliozzi, Alessandra
Doglia, Silvia Maria
Tortora, Paolo
Regonesi, Maria Elena
author_facet Natalello, Antonino
Frana, Anna Maria
Relini, Annalisa
Apicella, Alessandra
Invernizzi, Gaetano
Casari, Carlo
Gliozzi, Alessandra
Doglia, Silvia Maria
Tortora, Paolo
Regonesi, Maria Elena
author_sort Natalello, Antonino
collection PubMed
description The protein ataxin-3 consists of an N-terminal globular Josephin domain (JD) and an unstructured C-terminal region containing a stretch of consecutive glutamines that triggers the neurodegenerative disorder spinocerebellar ataxia type 3, when it is expanded beyond a critical threshold. The disease results from misfolding and aggregation, although the pathway and structure of the aggregation intermediates are not fully understood. In order to provide insight into the mechanism of the process, we monitored the aggregation of a normal (AT3Q24) ataxin-3, an expanded (AT3Q55) ataxin-3, and the JD in isolation. We observed that all of them aggregated, although the latter did so at a much slower rate. Furthermore, the expanded AT3Q55 displayed a substantially different behavior with respect to the two other variants in that at the latest stages of the process it was the only one that did the following: i) lost its reactivity towards an anti-oligomer antibody, ii) generated SDS-insoluble aggregates, iii) gave rise to bundles of elongated fibrils, and iv) displayed two additional bands at 1604 and 1656 cm(−1) in FTIR spectroscopy. Although these were previously observed in other aggregated polyglutamine proteins, no one has assigned them unambiguously, yet. By H/D exchange experiments we show for the first time that they can be ascribed to glutamine side-chain hydrogen bonding, which is therefore the hallmark of irreversibly SDS-insoluble aggregated protein. FTIR spectra also showed that main-chain intermolecular hydrogen bonding preceded that of glutamine side-chains, which suggests that the former favors the latter by reorganizing backbone geometry.
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spelling pubmed-30764512011-04-29 A Major Role for Side-Chain Polyglutamine Hydrogen Bonding in Irreversible Ataxin-3 Aggregation Natalello, Antonino Frana, Anna Maria Relini, Annalisa Apicella, Alessandra Invernizzi, Gaetano Casari, Carlo Gliozzi, Alessandra Doglia, Silvia Maria Tortora, Paolo Regonesi, Maria Elena PLoS One Research Article The protein ataxin-3 consists of an N-terminal globular Josephin domain (JD) and an unstructured C-terminal region containing a stretch of consecutive glutamines that triggers the neurodegenerative disorder spinocerebellar ataxia type 3, when it is expanded beyond a critical threshold. The disease results from misfolding and aggregation, although the pathway and structure of the aggregation intermediates are not fully understood. In order to provide insight into the mechanism of the process, we monitored the aggregation of a normal (AT3Q24) ataxin-3, an expanded (AT3Q55) ataxin-3, and the JD in isolation. We observed that all of them aggregated, although the latter did so at a much slower rate. Furthermore, the expanded AT3Q55 displayed a substantially different behavior with respect to the two other variants in that at the latest stages of the process it was the only one that did the following: i) lost its reactivity towards an anti-oligomer antibody, ii) generated SDS-insoluble aggregates, iii) gave rise to bundles of elongated fibrils, and iv) displayed two additional bands at 1604 and 1656 cm(−1) in FTIR spectroscopy. Although these were previously observed in other aggregated polyglutamine proteins, no one has assigned them unambiguously, yet. By H/D exchange experiments we show for the first time that they can be ascribed to glutamine side-chain hydrogen bonding, which is therefore the hallmark of irreversibly SDS-insoluble aggregated protein. FTIR spectra also showed that main-chain intermolecular hydrogen bonding preceded that of glutamine side-chains, which suggests that the former favors the latter by reorganizing backbone geometry. Public Library of Science 2011-04-13 /pmc/articles/PMC3076451/ /pubmed/21533208 http://dx.doi.org/10.1371/journal.pone.0018789 Text en Natalello 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
Natalello, Antonino
Frana, Anna Maria
Relini, Annalisa
Apicella, Alessandra
Invernizzi, Gaetano
Casari, Carlo
Gliozzi, Alessandra
Doglia, Silvia Maria
Tortora, Paolo
Regonesi, Maria Elena
A Major Role for Side-Chain Polyglutamine Hydrogen Bonding in Irreversible Ataxin-3 Aggregation
title A Major Role for Side-Chain Polyglutamine Hydrogen Bonding in Irreversible Ataxin-3 Aggregation
title_full A Major Role for Side-Chain Polyglutamine Hydrogen Bonding in Irreversible Ataxin-3 Aggregation
title_fullStr A Major Role for Side-Chain Polyglutamine Hydrogen Bonding in Irreversible Ataxin-3 Aggregation
title_full_unstemmed A Major Role for Side-Chain Polyglutamine Hydrogen Bonding in Irreversible Ataxin-3 Aggregation
title_short A Major Role for Side-Chain Polyglutamine Hydrogen Bonding in Irreversible Ataxin-3 Aggregation
title_sort major role for side-chain polyglutamine hydrogen bonding in irreversible ataxin-3 aggregation
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3076451/
https://www.ncbi.nlm.nih.gov/pubmed/21533208
http://dx.doi.org/10.1371/journal.pone.0018789
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