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Differential Activation of the ER Stress Factor XBP1 by Oligomeric Assemblies

Several neurodegenerative disorders are characterized by protein misfolding, a phenomenon that results in perturbation of cellular homeostasis. We recently identified the protective activity of the ER stress response factor XBP1 (X-box binding protein 1) against Amyloid-ß1-42 (Aß42) neurotoxicity in...

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Autores principales: Castillo-Carranza, Diana L., Zhang, Yan, Guerrero-Muñoz, Marcos J., Kayed, Rakez, Rincon-Limas, Diego E., Fernandez-Funez, Pedro
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Springer US 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3387497/
https://www.ncbi.nlm.nih.gov/pubmed/22528838
http://dx.doi.org/10.1007/s11064-012-0780-7
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author Castillo-Carranza, Diana L.
Zhang, Yan
Guerrero-Muñoz, Marcos J.
Kayed, Rakez
Rincon-Limas, Diego E.
Fernandez-Funez, Pedro
author_facet Castillo-Carranza, Diana L.
Zhang, Yan
Guerrero-Muñoz, Marcos J.
Kayed, Rakez
Rincon-Limas, Diego E.
Fernandez-Funez, Pedro
author_sort Castillo-Carranza, Diana L.
collection PubMed
description Several neurodegenerative disorders are characterized by protein misfolding, a phenomenon that results in perturbation of cellular homeostasis. We recently identified the protective activity of the ER stress response factor XBP1 (X-box binding protein 1) against Amyloid-ß1-42 (Aß42) neurotoxicity in cellular and Drosophila models of Alzheimer’s disease. Additionally, subtoxic concentrations of Aß42 soluble aggregates (oligomers) induced accumulation of spliced (active) XBP1 transcripts, supporting the involvement of the ER stress response in Aß42 neurotoxicity. Here, we tested the ability of three additional disease-related amyloidogenic proteins to induce ER stress by analyzing XBP1 activation at the RNA level. Treatment of human SY5Y neuroblastoma cells with homogeneous preparations of α-Synuclein (α-Syn), Prion protein (PrP106–126), and British dementia amyloid peptide (ABri1-34) confirmed the high toxicity of oligomers compared to monomers and fibers. Additionally, α-Syn oligomers, but not monomers or fibers, demonstrated potent induction of XBP1 splicing. On the other hand, PrP106–126 and ABri1-34 did not activate XBP1. These results illustrate the biological complexity of these structurally related assemblies and argue that oligomer toxicity depends on the activation of amyloid-specific cellular responses.
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spelling pubmed-33874972012-07-11 Differential Activation of the ER Stress Factor XBP1 by Oligomeric Assemblies Castillo-Carranza, Diana L. Zhang, Yan Guerrero-Muñoz, Marcos J. Kayed, Rakez Rincon-Limas, Diego E. Fernandez-Funez, Pedro Neurochem Res Original Paper Several neurodegenerative disorders are characterized by protein misfolding, a phenomenon that results in perturbation of cellular homeostasis. We recently identified the protective activity of the ER stress response factor XBP1 (X-box binding protein 1) against Amyloid-ß1-42 (Aß42) neurotoxicity in cellular and Drosophila models of Alzheimer’s disease. Additionally, subtoxic concentrations of Aß42 soluble aggregates (oligomers) induced accumulation of spliced (active) XBP1 transcripts, supporting the involvement of the ER stress response in Aß42 neurotoxicity. Here, we tested the ability of three additional disease-related amyloidogenic proteins to induce ER stress by analyzing XBP1 activation at the RNA level. Treatment of human SY5Y neuroblastoma cells with homogeneous preparations of α-Synuclein (α-Syn), Prion protein (PrP106–126), and British dementia amyloid peptide (ABri1-34) confirmed the high toxicity of oligomers compared to monomers and fibers. Additionally, α-Syn oligomers, but not monomers or fibers, demonstrated potent induction of XBP1 splicing. On the other hand, PrP106–126 and ABri1-34 did not activate XBP1. These results illustrate the biological complexity of these structurally related assemblies and argue that oligomer toxicity depends on the activation of amyloid-specific cellular responses. Springer US 2012-04-21 2012 /pmc/articles/PMC3387497/ /pubmed/22528838 http://dx.doi.org/10.1007/s11064-012-0780-7 Text en © The Author(s) 2012 https://creativecommons.org/licenses/by/4.0/ This article is distributed under the terms of the Creative Commons Attribution License which permits any use, distribution, and reproduction in any medium, provided the original author(s) and the source are credited.
spellingShingle Original Paper
Castillo-Carranza, Diana L.
Zhang, Yan
Guerrero-Muñoz, Marcos J.
Kayed, Rakez
Rincon-Limas, Diego E.
Fernandez-Funez, Pedro
Differential Activation of the ER Stress Factor XBP1 by Oligomeric Assemblies
title Differential Activation of the ER Stress Factor XBP1 by Oligomeric Assemblies
title_full Differential Activation of the ER Stress Factor XBP1 by Oligomeric Assemblies
title_fullStr Differential Activation of the ER Stress Factor XBP1 by Oligomeric Assemblies
title_full_unstemmed Differential Activation of the ER Stress Factor XBP1 by Oligomeric Assemblies
title_short Differential Activation of the ER Stress Factor XBP1 by Oligomeric Assemblies
title_sort differential activation of the er stress factor xbp1 by oligomeric assemblies
topic Original Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3387497/
https://www.ncbi.nlm.nih.gov/pubmed/22528838
http://dx.doi.org/10.1007/s11064-012-0780-7
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