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Analyzing the Birth and Propagation of Two Distinct Prions, [PSI(+)] and [Het-s](y), in Yeast

Various proteins, like the infectious yeast prions and the noninfectious human Huntingtin protein (with expanded polyQ), depend on a Gln or Asn (QN)-rich region for amyloid formation. Other prions, e.g., mammalian PrP and the [Het-s] prion of Podospora anserina, although still able to form infectiou...

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Detalles Bibliográficos
Autores principales: Mathur, Vidhu, Taneja, Vibha, Sun, Yidi, Liebman, Susan W.
Formato: Texto
Lenguaje:English
Publicado: The American Society for Cell Biology 2010
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2861605/
https://www.ncbi.nlm.nih.gov/pubmed/20219972
http://dx.doi.org/10.1091/mbc.E09-11-0927
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author Mathur, Vidhu
Taneja, Vibha
Sun, Yidi
Liebman, Susan W.
author_facet Mathur, Vidhu
Taneja, Vibha
Sun, Yidi
Liebman, Susan W.
author_sort Mathur, Vidhu
collection PubMed
description Various proteins, like the infectious yeast prions and the noninfectious human Huntingtin protein (with expanded polyQ), depend on a Gln or Asn (QN)-rich region for amyloid formation. Other prions, e.g., mammalian PrP and the [Het-s] prion of Podospora anserina, although still able to form infectious amyloid aggregates, do not have QN-rich regions. Furthermore, [Het-s] and yeast prions appear to differ dramatically in their amyloid conformation. Despite these differences, a fusion of the Het-s prion domain to GFP (Het-sPrD-GFP) can propagate in yeast as a prion called [Het-s](y). We analyzed the properties of two divergent prions in yeast: [Het-s](y) and the native yeast prion [PSI(+)] (prion form of translational termination factor Sup35). Curiously, the induced appearance and transmission of [PSI(+)] and [Het-s](y) aggregates is remarkably similar. Overexpression of tagged prion protein (Sup35-GFP or Het-sPrD-GFP) in nonprion cells gives rise to peripheral, and later internal, ring/mesh-like aggregates. The cells with these ring-like aggregates give rise to daughters with one (perivacuolar) or two (perivacuolar and juxtanuclear) dot-like aggregates per cell. These line, ring, mesh, and dot aggregates are not really the transmissible prion species and should only be regarded as phenotypic markers of the presence of the prions. Both [PSI(+)] and [Het-s](y) first appear in daughters as numerous tiny dot-like aggregates, and both require the endocytic protein, Sla2, for ring formation, but not propagation.
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spelling pubmed-28616052010-07-16 Analyzing the Birth and Propagation of Two Distinct Prions, [PSI(+)] and [Het-s](y), in Yeast Mathur, Vidhu Taneja, Vibha Sun, Yidi Liebman, Susan W. Mol Biol Cell Articles Various proteins, like the infectious yeast prions and the noninfectious human Huntingtin protein (with expanded polyQ), depend on a Gln or Asn (QN)-rich region for amyloid formation. Other prions, e.g., mammalian PrP and the [Het-s] prion of Podospora anserina, although still able to form infectious amyloid aggregates, do not have QN-rich regions. Furthermore, [Het-s] and yeast prions appear to differ dramatically in their amyloid conformation. Despite these differences, a fusion of the Het-s prion domain to GFP (Het-sPrD-GFP) can propagate in yeast as a prion called [Het-s](y). We analyzed the properties of two divergent prions in yeast: [Het-s](y) and the native yeast prion [PSI(+)] (prion form of translational termination factor Sup35). Curiously, the induced appearance and transmission of [PSI(+)] and [Het-s](y) aggregates is remarkably similar. Overexpression of tagged prion protein (Sup35-GFP or Het-sPrD-GFP) in nonprion cells gives rise to peripheral, and later internal, ring/mesh-like aggregates. The cells with these ring-like aggregates give rise to daughters with one (perivacuolar) or two (perivacuolar and juxtanuclear) dot-like aggregates per cell. These line, ring, mesh, and dot aggregates are not really the transmissible prion species and should only be regarded as phenotypic markers of the presence of the prions. Both [PSI(+)] and [Het-s](y) first appear in daughters as numerous tiny dot-like aggregates, and both require the endocytic protein, Sla2, for ring formation, but not propagation. The American Society for Cell Biology 2010-05-01 /pmc/articles/PMC2861605/ /pubmed/20219972 http://dx.doi.org/10.1091/mbc.E09-11-0927 Text en © 2010 by The American Society for Cell Biology
spellingShingle Articles
Mathur, Vidhu
Taneja, Vibha
Sun, Yidi
Liebman, Susan W.
Analyzing the Birth and Propagation of Two Distinct Prions, [PSI(+)] and [Het-s](y), in Yeast
title Analyzing the Birth and Propagation of Two Distinct Prions, [PSI(+)] and [Het-s](y), in Yeast
title_full Analyzing the Birth and Propagation of Two Distinct Prions, [PSI(+)] and [Het-s](y), in Yeast
title_fullStr Analyzing the Birth and Propagation of Two Distinct Prions, [PSI(+)] and [Het-s](y), in Yeast
title_full_unstemmed Analyzing the Birth and Propagation of Two Distinct Prions, [PSI(+)] and [Het-s](y), in Yeast
title_short Analyzing the Birth and Propagation of Two Distinct Prions, [PSI(+)] and [Het-s](y), in Yeast
title_sort analyzing the birth and propagation of two distinct prions, [psi(+)] and [het-s](y), in yeast
topic Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2861605/
https://www.ncbi.nlm.nih.gov/pubmed/20219972
http://dx.doi.org/10.1091/mbc.E09-11-0927
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