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Essential Genetic Interactors of SIR2 Required for Spatial Sequestration and Asymmetrical Inheritance of Protein Aggregates

Sir2 is a central regulator of yeast aging and its deficiency increases daughter cell inheritance of stress- and aging-induced misfolded proteins deposited in aggregates and inclusion bodies. Here, by quantifying traits predicted to affect aggregate inheritance in a passive manner, we found that a p...

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Autores principales: Song, Jia, Yang, Qian, Yang, Junsheng, Larsson, Lisa, Hao, Xinxin, Zhu, Xuefeng, Malmgren-Hill, Sandra, Cvijovic, Marija, Fernandez-Rodriguez, Julia, Grantham, Julie, Gustafsson, Claes M., Liu, Beidong, Nyström, Thomas
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4117435/
https://www.ncbi.nlm.nih.gov/pubmed/25079602
http://dx.doi.org/10.1371/journal.pgen.1004539
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author Song, Jia
Yang, Qian
Yang, Junsheng
Larsson, Lisa
Hao, Xinxin
Zhu, Xuefeng
Malmgren-Hill, Sandra
Cvijovic, Marija
Fernandez-Rodriguez, Julia
Grantham, Julie
Gustafsson, Claes M.
Liu, Beidong
Nyström, Thomas
author_facet Song, Jia
Yang, Qian
Yang, Junsheng
Larsson, Lisa
Hao, Xinxin
Zhu, Xuefeng
Malmgren-Hill, Sandra
Cvijovic, Marija
Fernandez-Rodriguez, Julia
Grantham, Julie
Gustafsson, Claes M.
Liu, Beidong
Nyström, Thomas
author_sort Song, Jia
collection PubMed
description Sir2 is a central regulator of yeast aging and its deficiency increases daughter cell inheritance of stress- and aging-induced misfolded proteins deposited in aggregates and inclusion bodies. Here, by quantifying traits predicted to affect aggregate inheritance in a passive manner, we found that a passive diffusion model cannot explain Sir2-dependent failures in mother-biased segregation of either the small aggregates formed by the misfolded Huntingtin, Htt103Q, disease protein or heat-induced Hsp104-associated aggregates. Instead, we found that the genetic interaction network of SIR2 comprises specific essential genes required for mother-biased segregation including those encoding components of the actin cytoskeleton, the actin-associated myosin V motor protein Myo2, and the actin organization protein calmodulin, Cmd1. Co-staining with Hsp104-GFP demonstrated that misfolded Htt103Q is sequestered into small aggregates, akin to stress foci formed upon heat stress, that fail to coalesce into inclusion bodies. Importantly, these Htt103Q foci, as well as the ATPase-defective Hsp104(Y662A)-associated structures previously shown to be stable stress foci, co-localized with Cmd1 and Myo2-enriched structures and super-resolution 3-D microscopy demonstrated that they are associated with actin cables. Moreover, we found that Hsp42 is required for formation of heat-induced Hsp104(Y662A) foci but not Htt103Q foci suggesting that the routes employed for foci formation are not identical. In addition to genes involved in actin-dependent processes, SIR2-interactors required for asymmetrical inheritance of Htt103Q and heat-induced aggregates encode essential sec genes involved in ER-to-Golgi trafficking/ER homeostasis.
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spelling pubmed-41174352014-08-04 Essential Genetic Interactors of SIR2 Required for Spatial Sequestration and Asymmetrical Inheritance of Protein Aggregates Song, Jia Yang, Qian Yang, Junsheng Larsson, Lisa Hao, Xinxin Zhu, Xuefeng Malmgren-Hill, Sandra Cvijovic, Marija Fernandez-Rodriguez, Julia Grantham, Julie Gustafsson, Claes M. Liu, Beidong Nyström, Thomas PLoS Genet Research Article Sir2 is a central regulator of yeast aging and its deficiency increases daughter cell inheritance of stress- and aging-induced misfolded proteins deposited in aggregates and inclusion bodies. Here, by quantifying traits predicted to affect aggregate inheritance in a passive manner, we found that a passive diffusion model cannot explain Sir2-dependent failures in mother-biased segregation of either the small aggregates formed by the misfolded Huntingtin, Htt103Q, disease protein or heat-induced Hsp104-associated aggregates. Instead, we found that the genetic interaction network of SIR2 comprises specific essential genes required for mother-biased segregation including those encoding components of the actin cytoskeleton, the actin-associated myosin V motor protein Myo2, and the actin organization protein calmodulin, Cmd1. Co-staining with Hsp104-GFP demonstrated that misfolded Htt103Q is sequestered into small aggregates, akin to stress foci formed upon heat stress, that fail to coalesce into inclusion bodies. Importantly, these Htt103Q foci, as well as the ATPase-defective Hsp104(Y662A)-associated structures previously shown to be stable stress foci, co-localized with Cmd1 and Myo2-enriched structures and super-resolution 3-D microscopy demonstrated that they are associated with actin cables. Moreover, we found that Hsp42 is required for formation of heat-induced Hsp104(Y662A) foci but not Htt103Q foci suggesting that the routes employed for foci formation are not identical. In addition to genes involved in actin-dependent processes, SIR2-interactors required for asymmetrical inheritance of Htt103Q and heat-induced aggregates encode essential sec genes involved in ER-to-Golgi trafficking/ER homeostasis. Public Library of Science 2014-07-31 /pmc/articles/PMC4117435/ /pubmed/25079602 http://dx.doi.org/10.1371/journal.pgen.1004539 Text en © 2014 Song 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, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Song, Jia
Yang, Qian
Yang, Junsheng
Larsson, Lisa
Hao, Xinxin
Zhu, Xuefeng
Malmgren-Hill, Sandra
Cvijovic, Marija
Fernandez-Rodriguez, Julia
Grantham, Julie
Gustafsson, Claes M.
Liu, Beidong
Nyström, Thomas
Essential Genetic Interactors of SIR2 Required for Spatial Sequestration and Asymmetrical Inheritance of Protein Aggregates
title Essential Genetic Interactors of SIR2 Required for Spatial Sequestration and Asymmetrical Inheritance of Protein Aggregates
title_full Essential Genetic Interactors of SIR2 Required for Spatial Sequestration and Asymmetrical Inheritance of Protein Aggregates
title_fullStr Essential Genetic Interactors of SIR2 Required for Spatial Sequestration and Asymmetrical Inheritance of Protein Aggregates
title_full_unstemmed Essential Genetic Interactors of SIR2 Required for Spatial Sequestration and Asymmetrical Inheritance of Protein Aggregates
title_short Essential Genetic Interactors of SIR2 Required for Spatial Sequestration and Asymmetrical Inheritance of Protein Aggregates
title_sort essential genetic interactors of sir2 required for spatial sequestration and asymmetrical inheritance of protein aggregates
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4117435/
https://www.ncbi.nlm.nih.gov/pubmed/25079602
http://dx.doi.org/10.1371/journal.pgen.1004539
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