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Folding or holding?—Hsp70 and Hsp90 chaperoning of misfolded proteins in neurodegenerative disease

The toxic accumulation of misfolded proteins as inclusions, fibrils, or aggregates is a hallmark of many neurodegenerative diseases. However, how molecular chaperones, such as heat shock protein 70 kDa (Hsp70) and heat shock protein 90 kDa (Hsp90), defend cells against the accumulation of misfolded...

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Autores principales: Rutledge, Benjamin S., Choy, Wing-Yiu, Duennwald, Martin L.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Biochemistry and Molecular Biology 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9079180/
https://www.ncbi.nlm.nih.gov/pubmed/35398094
http://dx.doi.org/10.1016/j.jbc.2022.101905
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author Rutledge, Benjamin S.
Choy, Wing-Yiu
Duennwald, Martin L.
author_facet Rutledge, Benjamin S.
Choy, Wing-Yiu
Duennwald, Martin L.
author_sort Rutledge, Benjamin S.
collection PubMed
description The toxic accumulation of misfolded proteins as inclusions, fibrils, or aggregates is a hallmark of many neurodegenerative diseases. However, how molecular chaperones, such as heat shock protein 70 kDa (Hsp70) and heat shock protein 90 kDa (Hsp90), defend cells against the accumulation of misfolded proteins remains unclear. The ATP-dependent foldase function of both Hsp70 and Hsp90 actively transitions misfolded proteins back to their native conformation. By contrast, the ATP-independent holdase function of Hsp70 and Hsp90 prevents the accumulation of misfolded proteins. Foldase and holdase functions can protect against the toxicity associated with protein misfolding, yet we are only beginning to understand the mechanisms through which they modulate neurodegeneration. This review compares recent structural findings regarding the binding of Hsp90 to misfolded and intrinsically disordered proteins, such as tau, α-synuclein, and Tar DNA-binding protein 43. We propose that Hsp90 and Hsp70 interact with these proteins through an extended and dynamic interface that spans the surface of multiple domains of the chaperone proteins. This contrasts with many other Hsp90–client protein interactions for which only a single bound conformation of Hsp90 is proposed. The dynamic nature of these multidomain interactions allows for polymorphic binding of multiple conformations to vast regions of Hsp90. The holdase functions of Hsp70 and Hsp90 may thus allow neuronal cells to modulate misfolded proteins more efficiently by reducing the long-term ATP running costs of the chaperone budget. However, it remains unclear whether holdase functions protect cells by preventing aggregate formation or can increase neurotoxicity by inadvertently stabilizing deleterious oligomers.
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spelling pubmed-90791802022-05-13 Folding or holding?—Hsp70 and Hsp90 chaperoning of misfolded proteins in neurodegenerative disease Rutledge, Benjamin S. Choy, Wing-Yiu Duennwald, Martin L. J Biol Chem JBC Reviews The toxic accumulation of misfolded proteins as inclusions, fibrils, or aggregates is a hallmark of many neurodegenerative diseases. However, how molecular chaperones, such as heat shock protein 70 kDa (Hsp70) and heat shock protein 90 kDa (Hsp90), defend cells against the accumulation of misfolded proteins remains unclear. The ATP-dependent foldase function of both Hsp70 and Hsp90 actively transitions misfolded proteins back to their native conformation. By contrast, the ATP-independent holdase function of Hsp70 and Hsp90 prevents the accumulation of misfolded proteins. Foldase and holdase functions can protect against the toxicity associated with protein misfolding, yet we are only beginning to understand the mechanisms through which they modulate neurodegeneration. This review compares recent structural findings regarding the binding of Hsp90 to misfolded and intrinsically disordered proteins, such as tau, α-synuclein, and Tar DNA-binding protein 43. We propose that Hsp90 and Hsp70 interact with these proteins through an extended and dynamic interface that spans the surface of multiple domains of the chaperone proteins. This contrasts with many other Hsp90–client protein interactions for which only a single bound conformation of Hsp90 is proposed. The dynamic nature of these multidomain interactions allows for polymorphic binding of multiple conformations to vast regions of Hsp90. The holdase functions of Hsp70 and Hsp90 may thus allow neuronal cells to modulate misfolded proteins more efficiently by reducing the long-term ATP running costs of the chaperone budget. However, it remains unclear whether holdase functions protect cells by preventing aggregate formation or can increase neurotoxicity by inadvertently stabilizing deleterious oligomers. American Society for Biochemistry and Molecular Biology 2022-04-06 /pmc/articles/PMC9079180/ /pubmed/35398094 http://dx.doi.org/10.1016/j.jbc.2022.101905 Text en © 2022 The Authors https://creativecommons.org/licenses/by/4.0/This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle JBC Reviews
Rutledge, Benjamin S.
Choy, Wing-Yiu
Duennwald, Martin L.
Folding or holding?—Hsp70 and Hsp90 chaperoning of misfolded proteins in neurodegenerative disease
title Folding or holding?—Hsp70 and Hsp90 chaperoning of misfolded proteins in neurodegenerative disease
title_full Folding or holding?—Hsp70 and Hsp90 chaperoning of misfolded proteins in neurodegenerative disease
title_fullStr Folding or holding?—Hsp70 and Hsp90 chaperoning of misfolded proteins in neurodegenerative disease
title_full_unstemmed Folding or holding?—Hsp70 and Hsp90 chaperoning of misfolded proteins in neurodegenerative disease
title_short Folding or holding?—Hsp70 and Hsp90 chaperoning of misfolded proteins in neurodegenerative disease
title_sort folding or holding?—hsp70 and hsp90 chaperoning of misfolded proteins in neurodegenerative disease
topic JBC Reviews
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9079180/
https://www.ncbi.nlm.nih.gov/pubmed/35398094
http://dx.doi.org/10.1016/j.jbc.2022.101905
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