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SerpinB2 (PAI-2) Modulates Proteostasis via Binding Misfolded Proteins and Promotion of Cytoprotective Inclusion Formation

SerpinB2 (PAI-2), a member of the clade B family of serine protease inhibitors, is one of the most upregulated proteins following cellular stress. Originally described as an inhibitor of urokinase plasminogen activator, its predominant cytoplasmic localisation suggests an intracellular function. Ser...

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Autores principales: Lee, Jodi A., Yerbury, Justin J., Farrawell, Natalie, Shearer, Robert F., Constantinescu, Patrick, Hatters, Danny M., Schroder, Wayne A., Suhrbier, Andreas, Wilson, Mark R., Saunders, Darren N., Ranson, Marie
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4470917/
https://www.ncbi.nlm.nih.gov/pubmed/26083412
http://dx.doi.org/10.1371/journal.pone.0130136
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author Lee, Jodi A.
Yerbury, Justin J.
Farrawell, Natalie
Shearer, Robert F.
Constantinescu, Patrick
Hatters, Danny M.
Schroder, Wayne A.
Suhrbier, Andreas
Wilson, Mark R.
Saunders, Darren N.
Ranson, Marie
author_facet Lee, Jodi A.
Yerbury, Justin J.
Farrawell, Natalie
Shearer, Robert F.
Constantinescu, Patrick
Hatters, Danny M.
Schroder, Wayne A.
Suhrbier, Andreas
Wilson, Mark R.
Saunders, Darren N.
Ranson, Marie
author_sort Lee, Jodi A.
collection PubMed
description SerpinB2 (PAI-2), a member of the clade B family of serine protease inhibitors, is one of the most upregulated proteins following cellular stress. Originally described as an inhibitor of urokinase plasminogen activator, its predominant cytoplasmic localisation suggests an intracellular function. SerpinB2 has been reported to display cytoprotective properties in neurons and to interact with intracellular proteins including components of the ubiquitin-proteasome system (UPS). In the current study we explored the potential role of SerpinB2 as a modulator of proteotoxic stress. Initially, we transiently transfected wild-type SerpinB2 and SerpinB2-/- murine embryonic fibroblasts (MEFs) with Huntingtin exon1-polyglutamine (fused C-terminally to mCherry). Inclusion body formation as result of Huntingtin aggregation was evident in the SerpinB2 expressing cells but significantly impaired in the SerpinB2-/- cells, the latter concomitant with loss in cell viability. Importantly, recovery of the wild-type phenotype and cell viability was rescued by retroviral transduction of SerpinB2 expression. SerpinB2 modestly attenuated Huntingtin and amyloid beta fibril formation in vitro and was able to bind preferentially to misfolded proteins. Given the modest chaperone-like activity of SerpinB2 we tested the ability of SerpinB2 to modulate UPS and autophagy activity using a GFP reporter system and autophagy reporter, respectively. Activity of the UPS was reduced and autophagy was dysregulated in SerpinB2-/- compared to wild-type MEFs. Moreover, we observed a non-covalent interaction between ubiquitin and SerpinB2 in cells using GFP-pulldown assays and bimolecular fluorescence complementation. We conclude that SerpinB2 plays an important role in proteostasis as its loss leads to a proteotoxic phenotype associated with an inability to compartmentalize aggregating proteins and a reduced capacity of the UPS.
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spelling pubmed-44709172015-06-29 SerpinB2 (PAI-2) Modulates Proteostasis via Binding Misfolded Proteins and Promotion of Cytoprotective Inclusion Formation Lee, Jodi A. Yerbury, Justin J. Farrawell, Natalie Shearer, Robert F. Constantinescu, Patrick Hatters, Danny M. Schroder, Wayne A. Suhrbier, Andreas Wilson, Mark R. Saunders, Darren N. Ranson, Marie PLoS One Research Article SerpinB2 (PAI-2), a member of the clade B family of serine protease inhibitors, is one of the most upregulated proteins following cellular stress. Originally described as an inhibitor of urokinase plasminogen activator, its predominant cytoplasmic localisation suggests an intracellular function. SerpinB2 has been reported to display cytoprotective properties in neurons and to interact with intracellular proteins including components of the ubiquitin-proteasome system (UPS). In the current study we explored the potential role of SerpinB2 as a modulator of proteotoxic stress. Initially, we transiently transfected wild-type SerpinB2 and SerpinB2-/- murine embryonic fibroblasts (MEFs) with Huntingtin exon1-polyglutamine (fused C-terminally to mCherry). Inclusion body formation as result of Huntingtin aggregation was evident in the SerpinB2 expressing cells but significantly impaired in the SerpinB2-/- cells, the latter concomitant with loss in cell viability. Importantly, recovery of the wild-type phenotype and cell viability was rescued by retroviral transduction of SerpinB2 expression. SerpinB2 modestly attenuated Huntingtin and amyloid beta fibril formation in vitro and was able to bind preferentially to misfolded proteins. Given the modest chaperone-like activity of SerpinB2 we tested the ability of SerpinB2 to modulate UPS and autophagy activity using a GFP reporter system and autophagy reporter, respectively. Activity of the UPS was reduced and autophagy was dysregulated in SerpinB2-/- compared to wild-type MEFs. Moreover, we observed a non-covalent interaction between ubiquitin and SerpinB2 in cells using GFP-pulldown assays and bimolecular fluorescence complementation. We conclude that SerpinB2 plays an important role in proteostasis as its loss leads to a proteotoxic phenotype associated with an inability to compartmentalize aggregating proteins and a reduced capacity of the UPS. Public Library of Science 2015-06-17 /pmc/articles/PMC4470917/ /pubmed/26083412 http://dx.doi.org/10.1371/journal.pone.0130136 Text en © 2015 Lee 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
Lee, Jodi A.
Yerbury, Justin J.
Farrawell, Natalie
Shearer, Robert F.
Constantinescu, Patrick
Hatters, Danny M.
Schroder, Wayne A.
Suhrbier, Andreas
Wilson, Mark R.
Saunders, Darren N.
Ranson, Marie
SerpinB2 (PAI-2) Modulates Proteostasis via Binding Misfolded Proteins and Promotion of Cytoprotective Inclusion Formation
title SerpinB2 (PAI-2) Modulates Proteostasis via Binding Misfolded Proteins and Promotion of Cytoprotective Inclusion Formation
title_full SerpinB2 (PAI-2) Modulates Proteostasis via Binding Misfolded Proteins and Promotion of Cytoprotective Inclusion Formation
title_fullStr SerpinB2 (PAI-2) Modulates Proteostasis via Binding Misfolded Proteins and Promotion of Cytoprotective Inclusion Formation
title_full_unstemmed SerpinB2 (PAI-2) Modulates Proteostasis via Binding Misfolded Proteins and Promotion of Cytoprotective Inclusion Formation
title_short SerpinB2 (PAI-2) Modulates Proteostasis via Binding Misfolded Proteins and Promotion of Cytoprotective Inclusion Formation
title_sort serpinb2 (pai-2) modulates proteostasis via binding misfolded proteins and promotion of cytoprotective inclusion formation
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4470917/
https://www.ncbi.nlm.nih.gov/pubmed/26083412
http://dx.doi.org/10.1371/journal.pone.0130136
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