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Unzipping the Secrets of Amyloid Disassembly by the Human Disaggregase

Neurodegenerative diseases (NDs) are increasingly positioned as leading causes of global deaths. The accelerated aging of the population and its strong relationship with neurodegeneration forecast these pathologies as a huge global health problem in the upcoming years. In this scenario, there is an...

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Autores principales: Franco, Aitor, Velasco-Carneros, Lorea, Alvarez, Naiara, Orozco, Natalia, Moro, Fernando, Prado, Adelina, Muga, Arturo
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8534776/
https://www.ncbi.nlm.nih.gov/pubmed/34685723
http://dx.doi.org/10.3390/cells10102745
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author Franco, Aitor
Velasco-Carneros, Lorea
Alvarez, Naiara
Orozco, Natalia
Moro, Fernando
Prado, Adelina
Muga, Arturo
author_facet Franco, Aitor
Velasco-Carneros, Lorea
Alvarez, Naiara
Orozco, Natalia
Moro, Fernando
Prado, Adelina
Muga, Arturo
author_sort Franco, Aitor
collection PubMed
description Neurodegenerative diseases (NDs) are increasingly positioned as leading causes of global deaths. The accelerated aging of the population and its strong relationship with neurodegeneration forecast these pathologies as a huge global health problem in the upcoming years. In this scenario, there is an urgent need for understanding the basic molecular mechanisms associated with such diseases. A major molecular hallmark of most NDs is the accumulation of insoluble and toxic protein aggregates, known as amyloids, in extracellular or intracellular deposits. Here, we review the current knowledge on how molecular chaperones, and more specifically a ternary protein complex referred to as the human disaggregase, deals with amyloids. This machinery, composed of the constitutive Hsp70 (Hsc70), the class B J-protein DnaJB1 and the nucleotide exchange factor Apg2 (Hsp110), disassembles amyloids of α-synuclein implicated in Parkinson’s disease as well as of other disease-associated proteins such as tau and huntingtin. We highlight recent studies that have led to the dissection of the mechanism used by this chaperone system to perform its disaggregase activity. We also discuss whether this chaperone-mediated disassembly mechanism could be used to solubilize other amyloidogenic substrates. Finally, we evaluate the implications of the chaperone system in amyloid clearance and associated toxicity, which could be critical for the development of new therapies.
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spelling pubmed-85347762021-10-23 Unzipping the Secrets of Amyloid Disassembly by the Human Disaggregase Franco, Aitor Velasco-Carneros, Lorea Alvarez, Naiara Orozco, Natalia Moro, Fernando Prado, Adelina Muga, Arturo Cells Review Neurodegenerative diseases (NDs) are increasingly positioned as leading causes of global deaths. The accelerated aging of the population and its strong relationship with neurodegeneration forecast these pathologies as a huge global health problem in the upcoming years. In this scenario, there is an urgent need for understanding the basic molecular mechanisms associated with such diseases. A major molecular hallmark of most NDs is the accumulation of insoluble and toxic protein aggregates, known as amyloids, in extracellular or intracellular deposits. Here, we review the current knowledge on how molecular chaperones, and more specifically a ternary protein complex referred to as the human disaggregase, deals with amyloids. This machinery, composed of the constitutive Hsp70 (Hsc70), the class B J-protein DnaJB1 and the nucleotide exchange factor Apg2 (Hsp110), disassembles amyloids of α-synuclein implicated in Parkinson’s disease as well as of other disease-associated proteins such as tau and huntingtin. We highlight recent studies that have led to the dissection of the mechanism used by this chaperone system to perform its disaggregase activity. We also discuss whether this chaperone-mediated disassembly mechanism could be used to solubilize other amyloidogenic substrates. Finally, we evaluate the implications of the chaperone system in amyloid clearance and associated toxicity, which could be critical for the development of new therapies. MDPI 2021-10-14 /pmc/articles/PMC8534776/ /pubmed/34685723 http://dx.doi.org/10.3390/cells10102745 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
Franco, Aitor
Velasco-Carneros, Lorea
Alvarez, Naiara
Orozco, Natalia
Moro, Fernando
Prado, Adelina
Muga, Arturo
Unzipping the Secrets of Amyloid Disassembly by the Human Disaggregase
title Unzipping the Secrets of Amyloid Disassembly by the Human Disaggregase
title_full Unzipping the Secrets of Amyloid Disassembly by the Human Disaggregase
title_fullStr Unzipping the Secrets of Amyloid Disassembly by the Human Disaggregase
title_full_unstemmed Unzipping the Secrets of Amyloid Disassembly by the Human Disaggregase
title_short Unzipping the Secrets of Amyloid Disassembly by the Human Disaggregase
title_sort unzipping the secrets of amyloid disassembly by the human disaggregase
topic Review
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8534776/
https://www.ncbi.nlm.nih.gov/pubmed/34685723
http://dx.doi.org/10.3390/cells10102745
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