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Iron Oxide Nanoparticle-Induced Autophagic Flux Is Regulated by Interplay between p53-mTOR Axis and Bcl-2 Signaling in Hepatic Cells

Iron oxide-based nanoparticles have been repeatedly shown to affect lysosomal-mediated signaling. Recently, nanoparticles have demonstrated an ability to modulate autophagic flux via lysosome-dependent signaling. However, the precise underlying mechanisms of such modulation as well as the impact of...

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Autores principales: Uzhytchak, Mariia, Smolková, Barbora, Lunova, Mariia, Jirsa, Milan, Frtús, Adam, Kubinová, Šárka, Dejneka, Alexandr, Lunov, Oleg
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7226334/
https://www.ncbi.nlm.nih.gov/pubmed/32325714
http://dx.doi.org/10.3390/cells9041015
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author Uzhytchak, Mariia
Smolková, Barbora
Lunova, Mariia
Jirsa, Milan
Frtús, Adam
Kubinová, Šárka
Dejneka, Alexandr
Lunov, Oleg
author_facet Uzhytchak, Mariia
Smolková, Barbora
Lunova, Mariia
Jirsa, Milan
Frtús, Adam
Kubinová, Šárka
Dejneka, Alexandr
Lunov, Oleg
author_sort Uzhytchak, Mariia
collection PubMed
description Iron oxide-based nanoparticles have been repeatedly shown to affect lysosomal-mediated signaling. Recently, nanoparticles have demonstrated an ability to modulate autophagic flux via lysosome-dependent signaling. However, the precise underlying mechanisms of such modulation as well as the impact of cellular genetic background remain enigmatic. In this study, we investigated how lysosomal-mediated signaling is affected by iron oxide nanoparticle uptake in three distinct hepatic cell lines. We found that nanoparticle-induced lysosomal dysfunction alters sub-cellular localization of pmTOR and p53 proteins. Our data indicate that alterations in the sub-cellular localization of p53 protein induced by nanoparticle greatly affect the autophagic flux. We found that cells with high levels of Bcl-2 are insensitive to autophagy initiated by nanoparticles. Altogether, our data identify lysosomes as a central hub that control nanoparticle-mediated responses in hepatic cells. Our results provide an important fundamental background for the future development of targeted nanoparticle-based therapies.
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spelling pubmed-72263342020-05-18 Iron Oxide Nanoparticle-Induced Autophagic Flux Is Regulated by Interplay between p53-mTOR Axis and Bcl-2 Signaling in Hepatic Cells Uzhytchak, Mariia Smolková, Barbora Lunova, Mariia Jirsa, Milan Frtús, Adam Kubinová, Šárka Dejneka, Alexandr Lunov, Oleg Cells Article Iron oxide-based nanoparticles have been repeatedly shown to affect lysosomal-mediated signaling. Recently, nanoparticles have demonstrated an ability to modulate autophagic flux via lysosome-dependent signaling. However, the precise underlying mechanisms of such modulation as well as the impact of cellular genetic background remain enigmatic. In this study, we investigated how lysosomal-mediated signaling is affected by iron oxide nanoparticle uptake in three distinct hepatic cell lines. We found that nanoparticle-induced lysosomal dysfunction alters sub-cellular localization of pmTOR and p53 proteins. Our data indicate that alterations in the sub-cellular localization of p53 protein induced by nanoparticle greatly affect the autophagic flux. We found that cells with high levels of Bcl-2 are insensitive to autophagy initiated by nanoparticles. Altogether, our data identify lysosomes as a central hub that control nanoparticle-mediated responses in hepatic cells. Our results provide an important fundamental background for the future development of targeted nanoparticle-based therapies. MDPI 2020-04-18 /pmc/articles/PMC7226334/ /pubmed/32325714 http://dx.doi.org/10.3390/cells9041015 Text en © 2020 by the authors. 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 (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Uzhytchak, Mariia
Smolková, Barbora
Lunova, Mariia
Jirsa, Milan
Frtús, Adam
Kubinová, Šárka
Dejneka, Alexandr
Lunov, Oleg
Iron Oxide Nanoparticle-Induced Autophagic Flux Is Regulated by Interplay between p53-mTOR Axis and Bcl-2 Signaling in Hepatic Cells
title Iron Oxide Nanoparticle-Induced Autophagic Flux Is Regulated by Interplay between p53-mTOR Axis and Bcl-2 Signaling in Hepatic Cells
title_full Iron Oxide Nanoparticle-Induced Autophagic Flux Is Regulated by Interplay between p53-mTOR Axis and Bcl-2 Signaling in Hepatic Cells
title_fullStr Iron Oxide Nanoparticle-Induced Autophagic Flux Is Regulated by Interplay between p53-mTOR Axis and Bcl-2 Signaling in Hepatic Cells
title_full_unstemmed Iron Oxide Nanoparticle-Induced Autophagic Flux Is Regulated by Interplay between p53-mTOR Axis and Bcl-2 Signaling in Hepatic Cells
title_short Iron Oxide Nanoparticle-Induced Autophagic Flux Is Regulated by Interplay between p53-mTOR Axis and Bcl-2 Signaling in Hepatic Cells
title_sort iron oxide nanoparticle-induced autophagic flux is regulated by interplay between p53-mtor axis and bcl-2 signaling in hepatic cells
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7226334/
https://www.ncbi.nlm.nih.gov/pubmed/32325714
http://dx.doi.org/10.3390/cells9041015
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