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Cell Stress Induces Mislocalization of Transcription Factors with Mitochondrial Enrichment

Previous evidence links the formation of extranuclear inclusions of transcription factors, such as ERK, Jun, TDP-43, and REST, with oxidative, endoplasmic-reticulum, proteasomal, and osmotic stress. To further characterize its extranuclear location, we performed a high-content screening based on con...

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Autores principales: Rossi, Chiara, Fernàndez, Anna, Torres, Pascual, Ramirez-Nuñez, Omar, Granado-Serrano, Ana Belén, Fontdevila, Laia, Povedano, Mònica, Pamplona, Reinald, Ferrer, Isidro, Portero-Otin, Manuel
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8396249/
https://www.ncbi.nlm.nih.gov/pubmed/34445555
http://dx.doi.org/10.3390/ijms22168853
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author Rossi, Chiara
Fernàndez, Anna
Torres, Pascual
Ramirez-Nuñez, Omar
Granado-Serrano, Ana Belén
Fontdevila, Laia
Povedano, Mònica
Pamplona, Reinald
Ferrer, Isidro
Portero-Otin, Manuel
author_facet Rossi, Chiara
Fernàndez, Anna
Torres, Pascual
Ramirez-Nuñez, Omar
Granado-Serrano, Ana Belén
Fontdevila, Laia
Povedano, Mònica
Pamplona, Reinald
Ferrer, Isidro
Portero-Otin, Manuel
author_sort Rossi, Chiara
collection PubMed
description Previous evidence links the formation of extranuclear inclusions of transcription factors, such as ERK, Jun, TDP-43, and REST, with oxidative, endoplasmic-reticulum, proteasomal, and osmotic stress. To further characterize its extranuclear location, we performed a high-content screening based on confocal microscopy and automatized image analyses of an epithelial cell culture treated with hydrogen peroxide, thapsigargin, epoxomicin, or sorbitol at different concentrations and times to recreate the stresses mentioned above. We also performed a subcellular fractionation of the brain from transgenic mice overexpressing the Q331K-mutated TARDBP, and we analyzed the REST-regulated mRNAs. The results show that these nuclear proteins exhibit a mitochondrial location, together with significant nuclear/extranuclear ratio changes, in a protein and stress-specific manner. The presence of these proteins in enriched mitochondrial fractions in vivo confirmed the results of the image analyses. TDP-43 aggregation was associated with alterations in the mRNA levels of the REST target genes involved in calcium homeostasis, apoptosis, and metabolism. In conclusion, cell stress increased the mitochondrial translocation of nuclear proteins, increasing the chance of proteostasis alterations. Furthermore, TDP-43 aggregation impacts REST target genes, disclosing an exciting interaction between these two transcription factors in neurodegenerative processes.
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spelling pubmed-83962492021-08-28 Cell Stress Induces Mislocalization of Transcription Factors with Mitochondrial Enrichment Rossi, Chiara Fernàndez, Anna Torres, Pascual Ramirez-Nuñez, Omar Granado-Serrano, Ana Belén Fontdevila, Laia Povedano, Mònica Pamplona, Reinald Ferrer, Isidro Portero-Otin, Manuel Int J Mol Sci Article Previous evidence links the formation of extranuclear inclusions of transcription factors, such as ERK, Jun, TDP-43, and REST, with oxidative, endoplasmic-reticulum, proteasomal, and osmotic stress. To further characterize its extranuclear location, we performed a high-content screening based on confocal microscopy and automatized image analyses of an epithelial cell culture treated with hydrogen peroxide, thapsigargin, epoxomicin, or sorbitol at different concentrations and times to recreate the stresses mentioned above. We also performed a subcellular fractionation of the brain from transgenic mice overexpressing the Q331K-mutated TARDBP, and we analyzed the REST-regulated mRNAs. The results show that these nuclear proteins exhibit a mitochondrial location, together with significant nuclear/extranuclear ratio changes, in a protein and stress-specific manner. The presence of these proteins in enriched mitochondrial fractions in vivo confirmed the results of the image analyses. TDP-43 aggregation was associated with alterations in the mRNA levels of the REST target genes involved in calcium homeostasis, apoptosis, and metabolism. In conclusion, cell stress increased the mitochondrial translocation of nuclear proteins, increasing the chance of proteostasis alterations. Furthermore, TDP-43 aggregation impacts REST target genes, disclosing an exciting interaction between these two transcription factors in neurodegenerative processes. MDPI 2021-08-17 /pmc/articles/PMC8396249/ /pubmed/34445555 http://dx.doi.org/10.3390/ijms22168853 Text en © 2021 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
Rossi, Chiara
Fernàndez, Anna
Torres, Pascual
Ramirez-Nuñez, Omar
Granado-Serrano, Ana Belén
Fontdevila, Laia
Povedano, Mònica
Pamplona, Reinald
Ferrer, Isidro
Portero-Otin, Manuel
Cell Stress Induces Mislocalization of Transcription Factors with Mitochondrial Enrichment
title Cell Stress Induces Mislocalization of Transcription Factors with Mitochondrial Enrichment
title_full Cell Stress Induces Mislocalization of Transcription Factors with Mitochondrial Enrichment
title_fullStr Cell Stress Induces Mislocalization of Transcription Factors with Mitochondrial Enrichment
title_full_unstemmed Cell Stress Induces Mislocalization of Transcription Factors with Mitochondrial Enrichment
title_short Cell Stress Induces Mislocalization of Transcription Factors with Mitochondrial Enrichment
title_sort cell stress induces mislocalization of transcription factors with mitochondrial enrichment
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8396249/
https://www.ncbi.nlm.nih.gov/pubmed/34445555
http://dx.doi.org/10.3390/ijms22168853
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