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Protein Aggregation Landscape in Neurodegenerative Diseases: Clinical Relevance and Future Applications

Intrinsic disorder is a natural feature of polypeptide chains, resulting in the lack of a defined three-dimensional structure. Conformational changes in intrinsically disordered regions of a protein lead to unstable β-sheet enriched intermediates, which are stabilized by intermolecular interactions...

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Autores principales: Candelise, Niccolò, Scaricamazza, Silvia, Salvatori, Illari, Ferri, Alberto, Valle, Cristiana, Manganelli, Valeria, Garofalo, Tina, Sorice, Maurizio, Misasi, Roberta
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
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Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8199687/
https://www.ncbi.nlm.nih.gov/pubmed/34199513
http://dx.doi.org/10.3390/ijms22116016
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author Candelise, Niccolò
Scaricamazza, Silvia
Salvatori, Illari
Ferri, Alberto
Valle, Cristiana
Manganelli, Valeria
Garofalo, Tina
Sorice, Maurizio
Misasi, Roberta
author_facet Candelise, Niccolò
Scaricamazza, Silvia
Salvatori, Illari
Ferri, Alberto
Valle, Cristiana
Manganelli, Valeria
Garofalo, Tina
Sorice, Maurizio
Misasi, Roberta
author_sort Candelise, Niccolò
collection PubMed
description Intrinsic disorder is a natural feature of polypeptide chains, resulting in the lack of a defined three-dimensional structure. Conformational changes in intrinsically disordered regions of a protein lead to unstable β-sheet enriched intermediates, which are stabilized by intermolecular interactions with other β-sheet enriched molecules, producing stable proteinaceous aggregates. Upon misfolding, several pathways may be undertaken depending on the composition of the amino acidic string and the surrounding environment, leading to different structures. Accumulating evidence is suggesting that the conformational state of a protein may initiate signalling pathways involved both in pathology and physiology. In this review, we will summarize the heterogeneity of structures that are produced from intrinsically disordered protein domains and highlight the routes that lead to the formation of physiological liquid droplets as well as pathogenic aggregates. The most common proteins found in aggregates in neurodegenerative diseases and their structural variability will be addressed. We will further evaluate the clinical relevance and future applications of the study of the structural heterogeneity of protein aggregates, which may aid the understanding of the phenotypic diversity observed in neurodegenerative disorders.
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spelling pubmed-81996872021-06-14 Protein Aggregation Landscape in Neurodegenerative Diseases: Clinical Relevance and Future Applications Candelise, Niccolò Scaricamazza, Silvia Salvatori, Illari Ferri, Alberto Valle, Cristiana Manganelli, Valeria Garofalo, Tina Sorice, Maurizio Misasi, Roberta Int J Mol Sci Review Intrinsic disorder is a natural feature of polypeptide chains, resulting in the lack of a defined three-dimensional structure. Conformational changes in intrinsically disordered regions of a protein lead to unstable β-sheet enriched intermediates, which are stabilized by intermolecular interactions with other β-sheet enriched molecules, producing stable proteinaceous aggregates. Upon misfolding, several pathways may be undertaken depending on the composition of the amino acidic string and the surrounding environment, leading to different structures. Accumulating evidence is suggesting that the conformational state of a protein may initiate signalling pathways involved both in pathology and physiology. In this review, we will summarize the heterogeneity of structures that are produced from intrinsically disordered protein domains and highlight the routes that lead to the formation of physiological liquid droplets as well as pathogenic aggregates. The most common proteins found in aggregates in neurodegenerative diseases and their structural variability will be addressed. We will further evaluate the clinical relevance and future applications of the study of the structural heterogeneity of protein aggregates, which may aid the understanding of the phenotypic diversity observed in neurodegenerative disorders. MDPI 2021-06-02 /pmc/articles/PMC8199687/ /pubmed/34199513 http://dx.doi.org/10.3390/ijms22116016 Text en © 2021 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Review
Candelise, Niccolò
Scaricamazza, Silvia
Salvatori, Illari
Ferri, Alberto
Valle, Cristiana
Manganelli, Valeria
Garofalo, Tina
Sorice, Maurizio
Misasi, Roberta
Protein Aggregation Landscape in Neurodegenerative Diseases: Clinical Relevance and Future Applications
title Protein Aggregation Landscape in Neurodegenerative Diseases: Clinical Relevance and Future Applications
title_full Protein Aggregation Landscape in Neurodegenerative Diseases: Clinical Relevance and Future Applications
title_fullStr Protein Aggregation Landscape in Neurodegenerative Diseases: Clinical Relevance and Future Applications
title_full_unstemmed Protein Aggregation Landscape in Neurodegenerative Diseases: Clinical Relevance and Future Applications
title_short Protein Aggregation Landscape in Neurodegenerative Diseases: Clinical Relevance and Future Applications
title_sort protein aggregation landscape in neurodegenerative diseases: clinical relevance and future applications
topic Review
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8199687/
https://www.ncbi.nlm.nih.gov/pubmed/34199513
http://dx.doi.org/10.3390/ijms22116016
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