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Parkinsonian toxin-induced oxidative stress inhibits basal autophagy in astrocytes via NQO2/quinone oxidoreductase 2: Implications for neuroprotection

Oxidative stress (OS) stimulates autophagy in different cellular systems, but it remains controversial if this rule can be generalized. We have analyzed the effect of chronic OS induced by the parkinsonian toxin paraquat (PQ) on autophagy in astrocytoma cells and primary astrocytes, which represent...

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Autores principales: Janda, Elzbieta, Lascala, Antonella, Carresi, Cristina, Parafati, Maddalena, Aprigliano, Serafina, Russo, Vanessa, Savoia, Claudia, Ziviani, Elena, Musolino, Vincenzo, Morani, Federica, Isidoro, Ciro, Mollace, Vincenzo
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Taylor & Francis 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4590600/
https://www.ncbi.nlm.nih.gov/pubmed/26046590
http://dx.doi.org/10.1080/15548627.2015.1058683
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author Janda, Elzbieta
Lascala, Antonella
Carresi, Cristina
Parafati, Maddalena
Aprigliano, Serafina
Russo, Vanessa
Savoia, Claudia
Ziviani, Elena
Musolino, Vincenzo
Morani, Federica
Isidoro, Ciro
Mollace, Vincenzo
author_facet Janda, Elzbieta
Lascala, Antonella
Carresi, Cristina
Parafati, Maddalena
Aprigliano, Serafina
Russo, Vanessa
Savoia, Claudia
Ziviani, Elena
Musolino, Vincenzo
Morani, Federica
Isidoro, Ciro
Mollace, Vincenzo
author_sort Janda, Elzbieta
collection PubMed
description Oxidative stress (OS) stimulates autophagy in different cellular systems, but it remains controversial if this rule can be generalized. We have analyzed the effect of chronic OS induced by the parkinsonian toxin paraquat (PQ) on autophagy in astrocytoma cells and primary astrocytes, which represent the first cellular target of neurotoxins in the brain. PQ decreased the basal levels of LC3-II and LC3-positive vesicles, and its colocalization with lysosomal markers, both in the absence and presence of chloroquine. This was paralleled by increased number and size of SQSTM1/p62 aggregates. Downregulation of autophagy was also observed in cells chronically exposed to hydrogen peroxide or nonlethal concentrations of PQ, and it was associated with a reduced astrocyte capability to protect dopaminergic cells from OS in co-cultures. Surprisingly, PQ treatment led to inhibition of MTOR, activation of MAPK8/JNK1 and MAPK1/ERK2-MAPK3/ERK1 and upregulation of BECN1/Beclin 1 expression, all signals typically correlating with induction of autophagy. Reduction of OS by NMDPEF, a specific NQO2 inhibitor, but not by N-acetylcysteine, abrogated the inhibitory effect of PQ and restored autophagic flux. Activation of NQO2 by PQ or menadione and genetic manipulation of its expression confirmed the role of this enzyme in the inhibitory action of PQ on autophagy. PQ did not induce NFE2L2/NRF2, but when it was co-administered with NMDPEF NFE2L2 activity was enhanced in a SQSTM1-independent fashion. Thus, a prolonged OS in astrocytes inhibits LC3 lipidation and impairs autophagosome formation and autophagic flux, in spite of concomitant activation of several pro-autophagic signals. These findings outline an unanticipated neuroprotective role of astrocyte autophagy and identify in NQO2 a novel pharmacological target for its positive modulation.
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spelling pubmed-45906002016-02-03 Parkinsonian toxin-induced oxidative stress inhibits basal autophagy in astrocytes via NQO2/quinone oxidoreductase 2: Implications for neuroprotection Janda, Elzbieta Lascala, Antonella Carresi, Cristina Parafati, Maddalena Aprigliano, Serafina Russo, Vanessa Savoia, Claudia Ziviani, Elena Musolino, Vincenzo Morani, Federica Isidoro, Ciro Mollace, Vincenzo Autophagy Basic Research Paper Oxidative stress (OS) stimulates autophagy in different cellular systems, but it remains controversial if this rule can be generalized. We have analyzed the effect of chronic OS induced by the parkinsonian toxin paraquat (PQ) on autophagy in astrocytoma cells and primary astrocytes, which represent the first cellular target of neurotoxins in the brain. PQ decreased the basal levels of LC3-II and LC3-positive vesicles, and its colocalization with lysosomal markers, both in the absence and presence of chloroquine. This was paralleled by increased number and size of SQSTM1/p62 aggregates. Downregulation of autophagy was also observed in cells chronically exposed to hydrogen peroxide or nonlethal concentrations of PQ, and it was associated with a reduced astrocyte capability to protect dopaminergic cells from OS in co-cultures. Surprisingly, PQ treatment led to inhibition of MTOR, activation of MAPK8/JNK1 and MAPK1/ERK2-MAPK3/ERK1 and upregulation of BECN1/Beclin 1 expression, all signals typically correlating with induction of autophagy. Reduction of OS by NMDPEF, a specific NQO2 inhibitor, but not by N-acetylcysteine, abrogated the inhibitory effect of PQ and restored autophagic flux. Activation of NQO2 by PQ or menadione and genetic manipulation of its expression confirmed the role of this enzyme in the inhibitory action of PQ on autophagy. PQ did not induce NFE2L2/NRF2, but when it was co-administered with NMDPEF NFE2L2 activity was enhanced in a SQSTM1-independent fashion. Thus, a prolonged OS in astrocytes inhibits LC3 lipidation and impairs autophagosome formation and autophagic flux, in spite of concomitant activation of several pro-autophagic signals. These findings outline an unanticipated neuroprotective role of astrocyte autophagy and identify in NQO2 a novel pharmacological target for its positive modulation. Taylor & Francis 2015-06-05 /pmc/articles/PMC4590600/ /pubmed/26046590 http://dx.doi.org/10.1080/15548627.2015.1058683 Text en © 2015 The Author(s). Published with license by Taylor & Francis Group, LLC http://creativecommons.org/licenses/by-nc/3.0/ This is an Open Access article distributed under the terms of the Creative Commons Attribution-Non-Commercial License (http://creativecommons.org/licenses/by-nc/3.0/), which permits unrestricted non-commercial use, distribution, and reproduction in any medium, provided the original work is properly cited. The moral rights of the named author(s) have been asserted.
spellingShingle Basic Research Paper
Janda, Elzbieta
Lascala, Antonella
Carresi, Cristina
Parafati, Maddalena
Aprigliano, Serafina
Russo, Vanessa
Savoia, Claudia
Ziviani, Elena
Musolino, Vincenzo
Morani, Federica
Isidoro, Ciro
Mollace, Vincenzo
Parkinsonian toxin-induced oxidative stress inhibits basal autophagy in astrocytes via NQO2/quinone oxidoreductase 2: Implications for neuroprotection
title Parkinsonian toxin-induced oxidative stress inhibits basal autophagy in astrocytes via NQO2/quinone oxidoreductase 2: Implications for neuroprotection
title_full Parkinsonian toxin-induced oxidative stress inhibits basal autophagy in astrocytes via NQO2/quinone oxidoreductase 2: Implications for neuroprotection
title_fullStr Parkinsonian toxin-induced oxidative stress inhibits basal autophagy in astrocytes via NQO2/quinone oxidoreductase 2: Implications for neuroprotection
title_full_unstemmed Parkinsonian toxin-induced oxidative stress inhibits basal autophagy in astrocytes via NQO2/quinone oxidoreductase 2: Implications for neuroprotection
title_short Parkinsonian toxin-induced oxidative stress inhibits basal autophagy in astrocytes via NQO2/quinone oxidoreductase 2: Implications for neuroprotection
title_sort parkinsonian toxin-induced oxidative stress inhibits basal autophagy in astrocytes via nqo2/quinone oxidoreductase 2: implications for neuroprotection
topic Basic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4590600/
https://www.ncbi.nlm.nih.gov/pubmed/26046590
http://dx.doi.org/10.1080/15548627.2015.1058683
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