Cargando…

Yeast Chaperone Hsp70-Ssb Modulates a Variety of Protein-Based Heritable Elements

Prions are transmissible self-perpetuating protein isoforms associated with diseases and heritable traits. Yeast prions and non-transmissible protein aggregates (mnemons) are frequently based on cross-β ordered fibrous aggregates (amyloids). The formation and propagation of yeast prions are controll...

Descripción completa

Detalles Bibliográficos
Autores principales: Jay-Garcia, Lina M., Cornell, Joseph L., Howie, Rebecca L., Faber, Quincy L., Salas, Abigail, Chernova, Tatiana A., Chernoff, Yury O.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10218661/
https://www.ncbi.nlm.nih.gov/pubmed/37240005
http://dx.doi.org/10.3390/ijms24108660
_version_ 1785048826536525824
author Jay-Garcia, Lina M.
Cornell, Joseph L.
Howie, Rebecca L.
Faber, Quincy L.
Salas, Abigail
Chernova, Tatiana A.
Chernoff, Yury O.
author_facet Jay-Garcia, Lina M.
Cornell, Joseph L.
Howie, Rebecca L.
Faber, Quincy L.
Salas, Abigail
Chernova, Tatiana A.
Chernoff, Yury O.
author_sort Jay-Garcia, Lina M.
collection PubMed
description Prions are transmissible self-perpetuating protein isoforms associated with diseases and heritable traits. Yeast prions and non-transmissible protein aggregates (mnemons) are frequently based on cross-β ordered fibrous aggregates (amyloids). The formation and propagation of yeast prions are controlled by chaperone machinery. Ribosome-associated chaperone Hsp70-Ssb is known (and confirmed here) to modulate formation and propagation of the prion form of the Sup35 protein [PSI(+)]. Our new data show that both formation and mitotic transmission of the stress-inducible prion form of the Lsb2 protein ([LSB(+)]) are also significantly increased in the absence of Ssb. Notably, heat stress leads to a massive accumulation of [LSB(+)] cells in the absence of Ssb, implicating Ssb as a major downregulator of the [LSB(+)]-dependent memory of stress. Moreover, the aggregated form of Gγ subunit Ste18, [STE(+)], behaving as a non-heritable mnemon in the wild-type strain, is generated more efficiently and becomes heritable in the absence of Ssb. Lack of Ssb also facilitates mitotic transmission, while lack of the Ssb cochaperone Hsp40-Zuo1 facilitates both spontaneous formation and mitotic transmission of the Ure2 prion, [URE3]. These results demonstrate that Ssb is a general modulator of cytosolic amyloid aggregation, whose effect is not restricted only to [PSI(+)].
format Online
Article
Text
id pubmed-10218661
institution National Center for Biotechnology Information
language English
publishDate 2023
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-102186612023-05-27 Yeast Chaperone Hsp70-Ssb Modulates a Variety of Protein-Based Heritable Elements Jay-Garcia, Lina M. Cornell, Joseph L. Howie, Rebecca L. Faber, Quincy L. Salas, Abigail Chernova, Tatiana A. Chernoff, Yury O. Int J Mol Sci Article Prions are transmissible self-perpetuating protein isoforms associated with diseases and heritable traits. Yeast prions and non-transmissible protein aggregates (mnemons) are frequently based on cross-β ordered fibrous aggregates (amyloids). The formation and propagation of yeast prions are controlled by chaperone machinery. Ribosome-associated chaperone Hsp70-Ssb is known (and confirmed here) to modulate formation and propagation of the prion form of the Sup35 protein [PSI(+)]. Our new data show that both formation and mitotic transmission of the stress-inducible prion form of the Lsb2 protein ([LSB(+)]) are also significantly increased in the absence of Ssb. Notably, heat stress leads to a massive accumulation of [LSB(+)] cells in the absence of Ssb, implicating Ssb as a major downregulator of the [LSB(+)]-dependent memory of stress. Moreover, the aggregated form of Gγ subunit Ste18, [STE(+)], behaving as a non-heritable mnemon in the wild-type strain, is generated more efficiently and becomes heritable in the absence of Ssb. Lack of Ssb also facilitates mitotic transmission, while lack of the Ssb cochaperone Hsp40-Zuo1 facilitates both spontaneous formation and mitotic transmission of the Ure2 prion, [URE3]. These results demonstrate that Ssb is a general modulator of cytosolic amyloid aggregation, whose effect is not restricted only to [PSI(+)]. MDPI 2023-05-12 /pmc/articles/PMC10218661/ /pubmed/37240005 http://dx.doi.org/10.3390/ijms24108660 Text en © 2023 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 Article
Jay-Garcia, Lina M.
Cornell, Joseph L.
Howie, Rebecca L.
Faber, Quincy L.
Salas, Abigail
Chernova, Tatiana A.
Chernoff, Yury O.
Yeast Chaperone Hsp70-Ssb Modulates a Variety of Protein-Based Heritable Elements
title Yeast Chaperone Hsp70-Ssb Modulates a Variety of Protein-Based Heritable Elements
title_full Yeast Chaperone Hsp70-Ssb Modulates a Variety of Protein-Based Heritable Elements
title_fullStr Yeast Chaperone Hsp70-Ssb Modulates a Variety of Protein-Based Heritable Elements
title_full_unstemmed Yeast Chaperone Hsp70-Ssb Modulates a Variety of Protein-Based Heritable Elements
title_short Yeast Chaperone Hsp70-Ssb Modulates a Variety of Protein-Based Heritable Elements
title_sort yeast chaperone hsp70-ssb modulates a variety of protein-based heritable elements
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10218661/
https://www.ncbi.nlm.nih.gov/pubmed/37240005
http://dx.doi.org/10.3390/ijms24108660
work_keys_str_mv AT jaygarcialinam yeastchaperonehsp70ssbmodulatesavarietyofproteinbasedheritableelements
AT cornelljosephl yeastchaperonehsp70ssbmodulatesavarietyofproteinbasedheritableelements
AT howierebeccal yeastchaperonehsp70ssbmodulatesavarietyofproteinbasedheritableelements
AT faberquincyl yeastchaperonehsp70ssbmodulatesavarietyofproteinbasedheritableelements
AT salasabigail yeastchaperonehsp70ssbmodulatesavarietyofproteinbasedheritableelements
AT chernovatatianaa yeastchaperonehsp70ssbmodulatesavarietyofproteinbasedheritableelements
AT chernoffyuryo yeastchaperonehsp70ssbmodulatesavarietyofproteinbasedheritableelements