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DMSO-mediated curing of several yeast prion variants involves Hsp104 expression and protein solubilization, and is decreased in several autophagy related gene (atg) mutants

Chaperones and autophagy are components of the protein quality control system that contribute to the management of proteins that are misfolded and aggregated. Here, we use yeast prions, which are self-perpetuating aggregating proteins, as a means to understand how these protein quality control syste...

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Autores principales: Dorweiler, Jane E., Obaoye, Joanna O., Oddo, Mitch J., Shilati, Francesca M., Scheidemantle, Grace M., Coleman, Thomas J., Reilly, Jacob A., Smith, Gregory R., Manogaran, Anita L.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7058316/
https://www.ncbi.nlm.nih.gov/pubmed/32134970
http://dx.doi.org/10.1371/journal.pone.0229796
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author Dorweiler, Jane E.
Obaoye, Joanna O.
Oddo, Mitch J.
Shilati, Francesca M.
Scheidemantle, Grace M.
Coleman, Thomas J.
Reilly, Jacob A.
Smith, Gregory R.
Manogaran, Anita L.
author_facet Dorweiler, Jane E.
Obaoye, Joanna O.
Oddo, Mitch J.
Shilati, Francesca M.
Scheidemantle, Grace M.
Coleman, Thomas J.
Reilly, Jacob A.
Smith, Gregory R.
Manogaran, Anita L.
author_sort Dorweiler, Jane E.
collection PubMed
description Chaperones and autophagy are components of the protein quality control system that contribute to the management of proteins that are misfolded and aggregated. Here, we use yeast prions, which are self-perpetuating aggregating proteins, as a means to understand how these protein quality control systems influence aggregate loss. Chaperones, such as Hsp104, fragment prion aggregates to generate more prion seeds for propagation. While much is known about the role of chaperones, little is known about how other quality control systems contribute to prion propagation. We show that the aprotic solvent dimethyl sulfoxide (DMSO) cures a range of [PSI(+)] prion variants, which are related to several misfolded aggregated conformations of the Sup35 protein. Our studies show that DMSO-mediated curing is quicker and more efficient than guanidine hydrochloride, a prion curing agent that inactivates the Hsp104 chaperone. Instead, DMSO appears to induce Hsp104 expression. Using the yTRAP system, a recently developed transcriptional reporting system for tracking protein solubility, we found that DMSO also rapidly induces the accumulation of soluble Sup35 protein, suggesting a potential link between Hsp104 expression and disassembly of Sup35 from the prion aggregate. However, DMSO-mediated curing appears to also be associated with other quality control systems. While the induction of autophagy alone does not lead to curing, we found that DMSO-mediated curing is dramatically impaired in autophagy related (atg) gene mutants, suggesting that other factors influence this DMSO mechanism of curing. Our data suggest that DMSO-mediated curing is not simply dependent upon Hsp104 overexpression alone, but may further depend upon other aspects of proteostasis.
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spelling pubmed-70583162020-03-12 DMSO-mediated curing of several yeast prion variants involves Hsp104 expression and protein solubilization, and is decreased in several autophagy related gene (atg) mutants Dorweiler, Jane E. Obaoye, Joanna O. Oddo, Mitch J. Shilati, Francesca M. Scheidemantle, Grace M. Coleman, Thomas J. Reilly, Jacob A. Smith, Gregory R. Manogaran, Anita L. PLoS One Research Article Chaperones and autophagy are components of the protein quality control system that contribute to the management of proteins that are misfolded and aggregated. Here, we use yeast prions, which are self-perpetuating aggregating proteins, as a means to understand how these protein quality control systems influence aggregate loss. Chaperones, such as Hsp104, fragment prion aggregates to generate more prion seeds for propagation. While much is known about the role of chaperones, little is known about how other quality control systems contribute to prion propagation. We show that the aprotic solvent dimethyl sulfoxide (DMSO) cures a range of [PSI(+)] prion variants, which are related to several misfolded aggregated conformations of the Sup35 protein. Our studies show that DMSO-mediated curing is quicker and more efficient than guanidine hydrochloride, a prion curing agent that inactivates the Hsp104 chaperone. Instead, DMSO appears to induce Hsp104 expression. Using the yTRAP system, a recently developed transcriptional reporting system for tracking protein solubility, we found that DMSO also rapidly induces the accumulation of soluble Sup35 protein, suggesting a potential link between Hsp104 expression and disassembly of Sup35 from the prion aggregate. However, DMSO-mediated curing appears to also be associated with other quality control systems. While the induction of autophagy alone does not lead to curing, we found that DMSO-mediated curing is dramatically impaired in autophagy related (atg) gene mutants, suggesting that other factors influence this DMSO mechanism of curing. Our data suggest that DMSO-mediated curing is not simply dependent upon Hsp104 overexpression alone, but may further depend upon other aspects of proteostasis. Public Library of Science 2020-03-05 /pmc/articles/PMC7058316/ /pubmed/32134970 http://dx.doi.org/10.1371/journal.pone.0229796 Text en © 2020 Dorweiler 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 (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Dorweiler, Jane E.
Obaoye, Joanna O.
Oddo, Mitch J.
Shilati, Francesca M.
Scheidemantle, Grace M.
Coleman, Thomas J.
Reilly, Jacob A.
Smith, Gregory R.
Manogaran, Anita L.
DMSO-mediated curing of several yeast prion variants involves Hsp104 expression and protein solubilization, and is decreased in several autophagy related gene (atg) mutants
title DMSO-mediated curing of several yeast prion variants involves Hsp104 expression and protein solubilization, and is decreased in several autophagy related gene (atg) mutants
title_full DMSO-mediated curing of several yeast prion variants involves Hsp104 expression and protein solubilization, and is decreased in several autophagy related gene (atg) mutants
title_fullStr DMSO-mediated curing of several yeast prion variants involves Hsp104 expression and protein solubilization, and is decreased in several autophagy related gene (atg) mutants
title_full_unstemmed DMSO-mediated curing of several yeast prion variants involves Hsp104 expression and protein solubilization, and is decreased in several autophagy related gene (atg) mutants
title_short DMSO-mediated curing of several yeast prion variants involves Hsp104 expression and protein solubilization, and is decreased in several autophagy related gene (atg) mutants
title_sort dmso-mediated curing of several yeast prion variants involves hsp104 expression and protein solubilization, and is decreased in several autophagy related gene (atg) mutants
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7058316/
https://www.ncbi.nlm.nih.gov/pubmed/32134970
http://dx.doi.org/10.1371/journal.pone.0229796
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